顔写真

PHOTO

Shinohara Akira
篠原 彰
Shinohara Akira
篠原 彰
Institute for Protein Research, Professor

Research History 9

  1. 2001 - 2003
    大阪大学院理学研究科 助教授

  2. 1999 - 2000
    シカゴ大学 準教授

  3. 1999 - 2000
    University of Chicago, Assistant Professor

  4. 1991 - 1993
    日本学術振興会 特別研究員(PD)大阪大学

  5. 1991 - 1993
    Post-doctral fellow

  6. 2003 -
    - 大阪大学たんぱく質研究所 教授

  7. 2001 -
    - Osaka Univ. Graduate School of Science, Assistant Prof.

  8. 1993 -
    - 大阪大学理学部 助手

  9. 1993 -
    - Osaka Univ. Faculty of Science, Research Associate

Education 5

  1. Osaka Univ. Graduate School of Science

    1988/04 - 1991/03

  2. Osaka University Graduate School, Division of Natural Science

    - 1991

  3. Osaka University Graduate School of Science

    1986/04 - 1988/03

  4. Osaka Univ. School of Science Department of Biology

    1982/04 - 1986/03

  5. Osaka University Faculty of Science

    - 1986

Professional Memberships 1

  1. 日本分子生物学会

Research Areas 2

  1. Life sciences / Molecular biology /

  2. Life sciences / Genetics /

Awards 3

  1. Awards for Science and Technology

    2021/04

  2. 大阪科学賞

    大阪市 大阪府 大阪科学技術センター 2009

  3. 東燃研究奨励賞

    日本分子生物学会 1992

Papers 98

  1. Role of ATP-dependent chromatin remodelers in meiosis

    Sheetal Paliwal, Partha Dey, Swarangi Tambat, Akira Shinohara, Gunjan Mehta

    Trends in Genetics Vol. 41 No. 3 p. 236-250 2025/03 Research paper (scientific journal)

    Publisher: Elsevier BV
  2. Mei5–Sae3 stabilizes Dmc1 nucleating clusters for efficient Dmc1 assembly on RPA-coated single-stranded DNA

    Chin-Dian Wei, Hao-Yen Chang, Chia-Hua Lu, Chih-Chun Chang, Asako Furukohri, Stephen Mwaniki, Akira Shinohara, Peter Chi, Hung-Wen Li

    Nucleic Acids Research Vol. 52 No. 19 p. 11768-11784 2024/09/14 Research paper (scientific journal)

    Publisher: Oxford University Press (OUP)
  3. Mutational analysis of <scp>Mei5</scp>, a subunit of <scp>Mei5‐Sae3</scp> complex, in <scp>Dmc1</scp>‐mediated recombination during yeast meiosis

    Stephen Mwaniki, Priyanka Sawant, Osaretin P. Osemwenkhae, Yurika Fujita, Masaru Ito, Asako Furukohri, Akira Shinohara

    Genes to Cells Vol. 29 No. 8 p. 650-666 2024/06/25 Research paper (scientific journal)

    Publisher: Wiley
  4. Replication protein-A, RPA, plays a pivotal role in the maintenance of recombination checkpoint in yeast meiosis

    Arivarasan Sampathkumar, Zhong Chen, Yuting Tang, Yurika Fujita, Masaru Ito, Akira Shinohara

    Scientific Reports Vol. 14 No. 1 2024/04/25 Research paper (scientific journal)

    Publisher: Nature
  5. Human AAA+ ATPase FIGNL1 suppresses RAD51-mediated ultra-fine bridge formation

    Kenichiro Matsuzaki, Akira Shinohara, Miki Shinohara

    Nucleic Acids Research Vol. 52 No. 10 p. 5774-5791 2024/04/10 Research paper (scientific journal)

    Publisher: Oxford University Press (OUP)
  6. RPA interacts with Rad52 to promote meiotic crossover and noncrossover recombination

    Jeong H Joo, Soogil Hong, Mika T Higashide, Eui-Hwan Choi, Seobin Yoon, Min-Su Lee, Hyun Ah Kang, Akira Shinohara, Nancy Kleckner, Keun P Kim

    Nucleic Acids Research Vol. 52 No. 7 p. 3794-3809 2024/02/10 Research paper (scientific journal)

    Publisher: Oxford University Press (OUP)
  7. <scp>DNA</scp> double‐strand breaks regulate the cleavage‐independent release of Rec8‐cohesin during yeast meiosis

    Ghanim Fajish, Kiran Challa, Sagar Salim, Ajith VP, Stephen Mwaniki, Ruihao Zhang, Yurika Fujita, Masaru Ito, Koodali T. Nishant, Akira Shinohara

    Genes to Cells Vol. 29 No. 1 p. 86-98 2024/01/15 Research paper (scientific journal)

    Publisher: Wiley
  8. Heterozygosity alters Msh5 binding to meiotic chromosomes in the baker’s yeast

    Suman Dash, Sameer Joshi, Ajith V Pankajam, Akira Shinohara, Koodali T Nishan

    Genetics 2023/12 Research paper (scientific journal)

  9. Positive and negative regulators of RAD51/DMC1 in homologous recombination and DNA replication

    Masaru Ito, Yurika Fujita, Akira Shinohara

    DNA Repair p. 103613-103613 2023/12 Research paper (scientific journal)

    Publisher: Elsevier BV
  10. Fanconi anemia-associated mutation in RAD51 compromises the coordinated action of DNA binding and ATPase activities

    Sijia Liu, Akira Shinohara, Asako Furukohri

    Journal of Biological Chemistry p. 105424-105424 2023/11 Research paper (scientific journal)

    Publisher: Elsevier BV
  11. FIGNL1 AAA+ ATPase remodels RAD51 and DMC1 filaments in pre-meiotic DNA replication and meiotic recombination

    Masaru Ito, Asako Furukohri, Kenichiro Matsuzaki, Yurika Fujita, Atsushi Toyoda, Akira Shinohara

    Nature Communications Vol. 14 No. 1 2023/10/27 Research paper (scientific journal)

    Publisher: Springer Science and Business Media LLC
  12. Characterizing interaction between the juxtamembrane region of the single transmembrane protein and membrane using chemically synthesized peptides

    Takeshi Sato, Akira Shinohara

    STAR Protocols Vol. 4 No. 3 p. 102454-102454 2023/09 Research paper (scientific journal)

    Publisher: Elsevier BV
  13. The role of conserved amino acid residues of Sae3 in Mei5-Sae3 complex for Dmc1 assembly in meiotic recombination.

    Sawant, P, Mwaniki, S, Fujita, Y, Ito, M, Furukohori, A, Shinohara A

    Genes & Genetic Systems, Vol. in press No. 1 p. 45-52 2023/06 Research paper (scientific journal)

  14. The Msh5 complex shows homeostatic localization in response to DNA double-strand breaks in yeast meiosis.

    Shinohara M, A. Shinohara

    Frontiers in Cell and Developmental Biology Vol. 11 2023/05 Research paper (scientific journal)

    Publisher: Frontiers Media SA
  15. Exo1 protects DNA nicks from the ligation to promote crossover formation during meiosis.

    Payero, L, Gioia M, Pannafino G, Raghavan V, Chen J.J, Momoh S, Scotland, M, Carol Manhart C, Ghanim F.V, Shinohara A, K.T. Nishan, E. Alani

    PLoS Biology 2023/05

    Publisher: PLOS
  16. Chromosome architecture and homologous recombination in meiosis

    Masaru Ito, Akira Shinohara

    Frontiers in Cell and Developmental Biology Vol. 10 2023/01/06 Research paper (scientific journal)

    Publisher: Frontiers Media SA
  17. Dynamics of the HP1 Hinge Region with DNA Measured by Site-Directed Spin Labeling-EPR Spectroscopy

    Isao Suetake, Kazunobu Sato, Tomoaki Sugishita, Yuichi Mishima, Toshiki Takei, Toshimichi Fujiwara, Risa Mutoh, Akira Shinohara, Takeji Takui, Makoto Miyata, Hironobu Hojo, Toshiaki Arata

    Applied Magnetic Resonance Vol. 54 No. 1 p. 119-141 2022/12 Research paper (scientific journal)

  18. Phosphorylation of luminal region of the SUN-domain protein Mps3 promotes nuclear envelope localization during meiosis

    HBD Prasada Rao, Takeshi Sato, Kiran Challa, Yurika Fujita, Miki Shinohara, Akira Shinohara

    eLife Vol. 10 2021/09 Research paper (scientific journal)

    Publisher: eLife
  19. Ultrastructural analysis in yeast reveals a meiosis-specific actin-containing nuclear bundle

    Tomoko Takagi, Masako Osumi, Akira Shinohara

    Communications Biology Vol. 4 2021/08 Research paper (scientific journal)

    Publisher: Springer Nature
  20. Regulation of Msh4-Msh5 association with meiotic chromosomes in budding yeast

    Krishnaprasad G Nandanan, Sagar Salim, Ajith V Pankajam, Miki Shinohara, Gen Lin, Parijat Chakraborty, Amamah Farnaz, Lars M Steinmetz, Akira Shinohara, Koodali T Nishant

    Genetics Vol. 219 No. 2 2021/07/08 Research paper (scientific journal)

    Publisher: Oxford University Press (OUP)
  21. Structural dynamics of the chromo-shadow domain and chromodomain of HP1 bound to histone H3K9 methylated peptide, as measured by site-directed spin-labeling EPR spectroscopy

    Isao Suetake, Shigeaki Nakazawa, Kazunobu Sato, Risa Mutoh, Yuichi Mishima, Toru Kawakami, Toshiki Takei, Mikio Watanabe, Norio Sakai, Toshimichi Fujiwara, Takeji Takui, Makoto Miyata, Akira Shinohara, Hironobu Hojo, Toshiaki Arata

    Biochemical and Biophysical Research Communications Vol. 567 p. 42-48 2021/07 Research paper (scientific journal)

    Publisher: Elsevier BV
  22. The synaptonemal complex central region modulates crossover pathways and feedback control of meiotic double-strand break formation

    Min-Su Lee, Mika T Higashide, Hyungseok Choi, Ke Li, Soogil Hong, Kangseok Lee, Akira Shinohara, Miki Shinohara, Keun P Kim

    Nucleic Acids Research Vol. 49 No. 13 p. 7537-7553 2021/07/01 Research paper (scientific journal)

    Publisher: Oxford University Press (OUP)
  23. Rad9, a 53BP1 Ortholog of Budding Yeast, Is Insensitive to Spo11-Induced Double-Strand Breaks During Meiosis

    Takehiko Usui, Akira Shinohara

    Frontiers in Cell and Developmental Biology Vol. 9 2021/03/25 Research paper (scientific journal)

    Publisher: Frontiers Media SA
  24. SCFCdc4 ubiquitin ligase regulates synaptonemal complex formation during meiosis

    Zhihui Zhu, Mohammad Bani Ismail, Miki Shinohara, Akira Shinohara

    Life Science Alliance Vol. 4 No. 2 p. e202000933-e202000933 2021/02 Research paper (scientific journal)

    Publisher: Life Science Alliance, LLC
  25. Dual roles of yeast Rad51 N-terminal domain in repairing DNA double-strand breaks

    Tai-Ting Woo, Chi-Ning Chuang, Mika Higashide, Akira Shinohara, Ting-Fang Wang

    Nucleic Acids Research Vol. 48 No. 15 p. 8474-8489 2020/07/11 Research paper (scientific journal)

    Publisher: Oxford University Press (OUP)
  26. Toward Global Standardization of Conducting Fair Investigations of Allegations of Research Misconducts.

    Rei Nouchi, Hiroaki Aihara, Fumie Arie, Makoto Asashima, Hiroyuki Daida, Jun, Fudano, Yasuhiro Fujiwara, Shinji Fushiki, Robert J, Geller, Kazuo Hatano, Toshio Homma, Minoru Kimura, Toshio Kuroki, Koichi, Miki, Ikuo Morita, Kosaku Nitta, Akira Shinohara, Mikiko C, Siomi, Masayuki Yoshida, Iekuni Ichikawa

    Accountability in Research: Policies and Quality Assurance Vol. 27 No. 6 p. 327-346 2020/06 Research paper (scientific journal)

  27. Genetic Interactions of Histone Modification Machinery Set1 and PAF1C with the Recombination Complex Rec114-Mer2-Mei4 in the Formation of Meiotic DNA Double-Strand Breaks.

    Ying Zhang, Takuya Suzuki, Ke Li, Santosh K Gothwal, Miki Shinohara, Akira Shinohara

    International Journal of Molecular Sciences Vol. 21 No. 8 2020/04/12 Research paper (scientific journal)

  28. Rad50 zinc hook functions as a constitutive dimerization module interchangeable with SMC hinge.

    Hisashi Tatebe, Chew Theng Lim, Hiroki Konno, Kazuhiro Shiozaki, Akira Shinohara, Takayuki Uchihashi, Asako Furukohri

    Nature communications Vol. 11 No. 1 p. 370-370 2020/01/17 Research paper (scientific journal)

  29. Enhanced processivity of Dnmt1 by monoubiquitinated histone H3.

    Yuichi Mishima, Laura Brueckner, Saori Takahashi, Toru Kawakami, Junji Otani, Akira Shinohara, Kohei Takeshita, Ronald Garingalao Garvilles, Mikio Watanabe, Norio Sakai, Hideyuki Takeshima, Charlotte Nachtegael, Atsuya Nishiyama, Makoto Nakanishi, Kyohei Arita, Kinichi Nakashima, Hironobu Hojo, Isao Suetake

    Genes to Cells Vol. 25 No. 1 p. 22-32 2020/01 Research paper (scientific journal)

  30. Distinct Functions in Regulation of Meiotic Crossovers for DNA Damage Response Clamp Loader Rad24(Rad17) and Mec1(ATR) Kinase

    Shinohara, Miki, Bishop, Douglas K., Shinohara, Akira

    GENETICS Vol. 213 No. 4 p. 1255-1269 2019/12 Research paper (scientific journal)

  31. Srs2 helicase prevents the formation of toxic DNA damage during late prophase I of yeast meiosis

    Sasanuma, Hiroyuki, Sakurai, Hana Subhan M., Furihata, Yuko, Challa, Kiran, Palmer, Lira, Gasser, Susan M., Shinohara, Miki, Shinohara, Akira

    CHROMOSOMA Vol. 128 No. 3 p. 453-471 2019/09 Research paper (scientific journal)

    Publisher: SPRINGER
  32. Meiotic prophase-like pathway for cleavage-independent removal of cohesin for chromosome morphogenesis

    Kiran Challa, M. Shinohara, Shinohara Akira

    Current Genetics Vol. 65 No. 4 p. 817-827 2019/08 Research paper (scientific journal)

  33. Human RAD51 paralogue, SWSAP1, fosters RAD51 filament by regulating the anti-recombinase, FIGNL1 AAA+ ATPase

    Kenichiro Matsuzaki, Shizuka Kondo, Tatsuya Ishikawa, Akira Shinohara

    Nature Communications Vol. 10 No. 1 p. 1407-1407 2019/03 Research paper (scientific journal)

  34. Meiosis-specific cohesin component, Rec8, promotes the localization of Mps3 SUN domain protein on the nuclear envelope

    Bommi, Jagadeeswara Rao, Rao, Hanumanthu Bala Durga Prasada, Challa, Kiran, Higashide, Mika, Shinmyozu, Kaori, Nakayama, Jun-ichi, Shinohara, Miki, Shinohara, Akira

    GENES TO CELLS Vol. 24 No. 1 p. 94-106 2019/01 Research paper (scientific journal)

    Publisher: WILEY
  35. Meiosis-specific prophase-like pathway controls cleavage-independent release of cohesin by Wapl phosphorylation

    Challa, Kiran, Fajish, Ghanim, V, Shinohara, Miki, Klein, Franz, Gasser, Susan M., Shinohara, Akira

    PLOS GENETICS Vol. 15 No. 1 2019/01 Research paper (scientific journal)

  36. Molecular Camouflage of Plasmodium falciparum Merozoites by Binding of Host Vitronectin to P47 Fragment of SERA5.

    Takahiro Tougan, Jyotheeswara R Edula, Eizo Takashima, Masayuki Morita, Miki Shinohara, Akira Shinohara, Takafumi Tsuboi, Toshihiro Horii

    Scientific reports Vol. 8 No. 1 p. 5052-5052 2018/03/22 Research paper (scientific journal)

  37. RFTS-dependent negative regulation of Dnmt1 by nucleosome structure and histone tails

    Yuichi Mishima, Laura Brueckner, Saori Takahashi, Toru Kawakami, Kyohei Arita, Shota Oka, Junji Otani, Hironobu Hojo, Masahiro Shirakawa, Akira Shinohara, Mikio Watanabe, Isao Suetake

    FEBS JOURNAL Vol. 284 No. 20 p. 3455-3469 2017/10 Research paper (scientific journal)

  38. Modulating Crossover Frequency and Interference for Obligate Crossovers in Saccharomyces cerevisiae Meiosis

    Parijat Chakraborty, Ajith V. Pankajam, Gen Lin, Abhishek Dutta, Krishnaprasad G. Nandanan, Manu M. Tekkedil, Akira Shinohara, Lars M. Steinmetz, Nishant K. Thazath

    G3-GENES GENOMES GENETICS Vol. 7 No. 5 p. 1511-1524 2017/05 Research paper (scientific journal)

  39. Gamma-irradiated quiescent cells repair directly induced double-strand breaks but accumulate persistent double-strand breaks during subsequent DNA replication

    Yusuke Minakawa, Yuko Atsumi, Akira Shinohara, Yasufumi Murakami, Ken-ichi Yoshioka

    GENES TO CELLS Vol. 21 No. 7 p. 789-797 2016/07 Research paper (scientific journal)

  40. Rad61/Wpl1 (Wapl), a cohesin regulator, controls chromosome compaction during meiosis

    Challa, Kiran, Lee, Min-Su, Shinohara, Miki, Kim, Keun P., Shinohara, Akira

    NUCLEIC ACIDS RESEARCH Vol. 44 No. 7 p. 3190-3203 2016/04 Research paper (scientific journal)

  41. Chromosome Synapsis Alleviates Mek1-Dependent Suppression of Meiotic DNA Repair

    Vijayalakshmi V. Subramanian, Amy J. MacQueen, Gerben Vader, Miki Shinohara, Aurore Sanchez, Valérie Borde, Akira Shinohara, Andreas Hochwagen

    PLOS Biology Vol. 14 No. 2 p. e1002369-e1002369 2016/02/12 Research paper (scientific journal)

  42. The Double-Strand Break Landscape of Meiotic Chromosomes Is Shaped by the Paf1 Transcription Elongation Complex in Saccharomyces cerevisiae

    Santosh K Gothwal, Neem J Patel, Meaghan M Colletti, Hiroyuki Sasanuma, Miki Shinohara, Andreas Hochwagen, Akira Shinohara

    Genetics Vol. 202 No. 2 p. 497-512 2016/02/01 Research paper (scientific journal)

  43. ATM and SIRT6/SNF2H Mediate Transient H2AX Stabilization When DSBs Form by Blocking HUWE1 to Allow Efficient gamma H2AX Foci Formation

    Yuko Atsumi, Yusuke Minakawa, Masaya Ono, Sachiko Dobashi, Keitaro Shinohe, Akira Shinohara, Shunichi Takeda, Masatoshi Takagi, Nobuhiko Takamatsu, Hitoshi Nakagama, Hirobumi Teraoka, Ken-ichi Yoshioka

    CELL REPORTS Vol. 13 No. 12 p. 2728-2740 2015/12 Research paper (scientific journal)

  44. DNA damage response clamp 9-1-1 promotes assembly of ZMM proteins for formation of crossovers and synaptonemal complex

    Miki Shinohara, Kayoko Hayashihara, Jennifer T. Grubb, Douglas K. Bishop, Akira Shinohara

    Journal of Cell Science Vol. 128 No. 8 p. 1494-1506 2015/01/01 Research paper (scientific journal)

    Publisher: The Company of Biologists
  45. Canonical Non-Homologous End Joining in Mitosis Induces Genome Instability and Is Suppressed by M-phase-Specific Phosphorylation of XRCC4

    Terasawa, Masahiro, Shinohara, Akira, Shinohara, Miki

    PLOS GENETICS Vol. 10 No. 8 2014/08 Research paper (scientific journal)

  46. Dot1-Dependent Histone H3K79 Methylation Promotes the Formation of Meiotic Double-Strand Breaks in the Absence of Histone H3K4 Methylation in Budding Yeast

    Ismail, Mohammad Bani, Shinohara, Miki, Shinohara, Akira

    PLOS ONE Vol. 9 No. 5 2014/05 Research paper (scientific journal)

  47. The small GTPase Rab5 homologue Ypt5 regulates cell morphology, sexual development, ion-stress response and vacuolar formation in fission yeast

    Yuta Tsukamoto, Chisako Katayama, Miki Shinohara, Akira Shinohara, Shohei Maekawa, Masaaki Miyamoto

    Biochemical and Biophysical Research Communications Vol. 441 No. 4 p. 867-872 2013/11/29 Research paper (scientific journal)

  48. Remodeling of the Rad51 DNA Strand-Exchange Protein by the Srs2 Helicase

    Hiroyuki Sasanuma, Yuko Furihata, Miki Shinohara, Akira Shinohara

    Genetics Vol. 194 No. 4 p. 859-872 2013/08/01 Research paper (scientific journal)

  49. A new protein complex promoting the assembly of Rad51 filaments

    Hiroyuki Sasanuma, Maki S. Tawaramoto, Jessica P. Lao, Harumi Hosaka, Eri Sanda, Mamoru Suzuki, Eiki Yamashita, Neil Hunter, Miki Shinohara, Atsushi Nakagawa, Akira Shinohara

    Nature Communications Vol. 4 No. 1 2013/06 Research paper (scientific journal)

  50. Multiple Pathways Suppress Non-Allelic Homologous Recombination during Meiosis in Saccharomyces cerevisiae

    Miki Shinohara, Akira Shinohara

    PLOS ONE Vol. 8 No. 4 2013/04 Research paper (scientific journal)

  51. Mps3 SUN domain is important for chromosome motion and juxtaposition of homologous chromosomes during meiosis

    Hanumanthu B. D. Prasada Rao, Miki Shinohara, Akira Shinohara

    Genes to Cells Vol. 16 No. 11 p. 1081-1096 2011/11 Research paper (scientific journal)

  52. Cyclin-dependent kinase promotes formation of the synaptonemal complex in yeast meiosis

    Zhu, Zhihui, Mori, Saori, Oshiumi, Hiroyuki, Matsuzaki, Kenichiro, Shinohara, Miki, Shinohara, Akira

    GENES TO CELLS Vol. 15 No. 10 p. 1036-1050 2010/10 Research paper (scientific journal)

  53. Genetic Analysis of Baker's Yeast Msh4-Msh5 Reveals a Threshold Crossover Level for Meiotic Viability

    Nishant, K. T., Chen, Cheng, Shinohara, Miki, Shinohara, Akira, Alani, Eric

    PLOS GENETICS Vol. 6 No. 8 2010/08 Research paper (scientific journal)

  54. Collaborative Action of Brca1 and CtIP in Elimination of Covalent Modifications from Double-Strand Breaks to Facilitate Subsequent Break Repair

    Kyoko Nakamura, Toshiaki Kogame, Hiroyuki Oshiumi, Akira Shinohara, Yoshiki Sumitomo, Keli Agama, Yves Pommier, Kimiko M. Tsutsui, Ken Tsutsui, Edgar Hartsuiker, Tomoo Ogi, Shunichi Takeda, Yoshihito Taniguchi

    PLOS GENETICS Vol. 6 No. 1 2010/01 Research paper (scientific journal)

  55. Collaborative action of Brca1 and CtIP in elimination of covalent modifications from double-strand breaks to facilitate subsequent break repair

    Kyoko Nakamura, Toshiaki Kogame, Hiroyuki Oshiumi, Akira Shinohara, Yoshiki Sumitomo, Keli Agama, Yves Pommier, Kimiko M. Tsutsui, Ken Tsutsui, Edgar Hartsuiker, Tomoo Ogi, Shunichi Takeda, Yoshihito Taniguchi

    PLoS Genetics Vol. 6 No. 1 2010/01 Research paper (scientific journal)

  56. Csm4-Dependent Telomere Movement on Nuclear Envelope Promotes Meiotic Recombination

    Hiromichi Kosaka, Miki Shinohara, Akira Shinohara

    PLOS GENETICS Vol. 4 No. 9 2008/09 Research paper (scientific journal)

  57. Rapid telomere movement in meiotic prophase is promoted by NDJ1, MPS3, and CSM4 and is modulated by recombination

    Michael N. Conrad, Chih-Ying Lee, Gene Chao, M. Shinohara, H. Kosaka, A. Shinohara, J. -A. Conchello, Michael E. Dresser

    CELL Vol. 133 No. 7 p. 1175-1187 2008/06 Research paper (scientific journal)

  58. Forkhead-associated domain of yeast Xrs2, a homolog of human Nbs1, promotes nonhomologous end joining through interaction with a ligase IV partner protein, Lif1

    Kenichiro Matsuzaki, Akira Shinohara, Miki Shinohara

    GENETICS Vol. 179 No. 1 p. 213-225 2008/05 Research paper (scientific journal)

  59. Crossover assurance and crossover interference are distinctly regulated by the ZMM proteins during yeast meiosis

    Miki Shinohara, Steve D. Oh, Neil Hunter, Akira Shinohara

    NATURE GENETICS Vol. 40 No. 3 p. 299-309 2008/03 Research paper (scientific journal)

  60. Rad52 promotes postinvasion steps of meiotic double-strand-break repair

    Jessica P. Lao, Steve D. Oh, Miki Shinohara, Akira Shinohara, Neil Hunter

    MOLECULAR CELL Vol. 29 No. 4 p. 517-524 2008/02 Research paper (scientific journal)

  61. Functional interactions between BLM and XRCC3 in the cell

    Makoto Otsuki, Masayuki Seki, Eri Inoue, Akari Yoshimura, Genta Kato, Saki Yamanouchi, Yoh-ichi Kawabe, Shusuke Tada, Akira Shinohara, Jun-ichiro Komura, Tetsuya Ono, Shunichi Takeda, Yutaka Ishii, Takemi Enomoto

    JOURNAL OF CELL BIOLOGY Vol. 179 No. 1 p. 53-63 2007/10 Research paper (scientific journal)

  62. Functions of a New Protein Complex Involved in Homologous Recombination during Meiosis

    SHINOHARA Akira

    Seibutsu Butsuri Vol. 47 No. 2 p. 100-106 2007/03/25

    Publisher: The Biophysical Society of Japan General Incorporated Association
  63. A protein complex containing Mei5 and Sae3 promotes the assembly of the meiosis-specific RecA homolog Dmc1

    A Hayase, M Takagi, T Miyazaki, H Oshiumi, M Shinohara, A Shinohara

    CELL Vol. 119 No. 7 p. 927-940 2004/12 Research paper (scientific journal)

  64. Rad6-Bre1-mediated histone H2B ubiquitylation modulates the formation of double-strand breaks during meiosis.

    Yamashita, K, Shinohara, M, A. Shinohara

    Proc. Natl.Acad, Sci. USA. Vol. 101 No. 31 p. 11380-11386 2004/08 Research paper (scientific journal)

  65. Mnd1 is required for meiotic interhomolog repair

    C Zierhut, M Berlinger, C Rupp, A Shinohara, F Klein

    CURRENT BIOLOGY Vol. 14 No. 9 p. 752-762 2004/05 Research paper (scientific journal)

  66. In vivo assembly and disassembly of Rad51 and Rad52 complexes during double-strand break repair

    Toshiko Miyazaki, Debra A Bressan, Miki Shinohara, James E Haber, Akira Shinohara

    The EMBO Journal Vol. 23 No. 4 p. 939-949 2004/02/25 Research paper (scientific journal)

  67. The N-terminal DNA-binding domain of Rad52 promotes RAD51-independent recombination in Saccharomyces cerevisiae

    M Tsukamoto, K Yamashita, T Miyazaki, M Shinohara, A Shinohara

    GENETICS Vol. 165 No. 4 p. 1703-1715 2003/12 Research paper (scientific journal)

  68. The mitotic DNA damage checkpoint proteins Rad17 and Rad24 are required for repair of double-strand breaks during meiosis in yeast

    M Shinohara, K Sakai, T Ogawa, A Shinohara

    GENETICS Vol. 164 No. 3 p. 855-865 2003/07 Research paper (scientific journal)

  69. Crossover interference in Saccharomyces cerevisiae requires a TID1/RDH54- and DMC1-dependent pathway

    M Shinohara, K Sakai, A Shinohara, DY Bishop

    GENETICS Vol. 163 No. 4 p. 1273-1286 2003/04 Research paper (scientific journal)

  70. Saccharomyces cerevisiae Dmc1 protein promotes renaturation of single-strand DNA (ssDNA) and assimilation of ssDNA into homologous super-coiled duplex DNA

    ERL Hong, A Shinohara, DK Bishop

    JOURNAL OF BIOLOGICAL CHEMISTRY Vol. 276 No. 45 p. 41906-41912 2001/11 Research paper (scientific journal)

  71. Effect of ions and nucleotides on the interactions of yeast Rad51 protein with single-stranded oligonucleotides

    Jong-Moon Kim, Fabrice Maraboeuf, Seog K. Kim, Akira Shinohara, Masayuki Takahashi

    Journal of Biochemistry Vol. 129 No. 3 p. 469-475 2001 Research paper (scientific journal)

    Publisher: Japanese Biochemical Society
  72. Tid1/Rdh54 promotes colocalization of Rad51 and Dmc1 during meiotic recombination

    M Shinohara, SL Gasior, DK Bishop, A Shinohara

    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA Vol. 97 No. 20 p. 10814-10819 2000/09 Research paper (scientific journal)

  73. Rad51 accumulation at sites of DNA damage and in postreplicative chromatin

    S Tashiro, J Walter, A Shinohara, N Kamada, T Cremer

    JOURNAL OF CELL BIOLOGY Vol. 150 No. 2 p. 283-291 2000/07 Research paper (scientific journal)

  74. The controlling role of ATM in homologous recombinational repair of DNA damage

    C Morrison, E Sonoda, N Takao, A Shinohara, K Yamamoto, S Takeda

    EMBO JOURNAL Vol. 19 No. 3 p. 463-471 2000/02 Research paper (scientific journal)

  75. c-abl tyrosine kinase is not essential for ataxia telangiectasia mutated functions in chromosomal maintenance

    N Takao, R Mori, H Kato, A Shinohara, K Yamamoto

    JOURNAL OF BIOLOGICAL CHEMISTRY Vol. 275 No. 2 p. 725-728 2000/01 Research paper (scientific journal)

  76. The essential functions of human Rad51 are independent of ATP hydrolysis

    C Morrison, A Shinohara, E Sonoda, Y Yamaguchi-Iwai, M Takata, RR Weichselbaum, S Takeda

    MOLECULAR AND CELLULAR BIOLOGY Vol. 19 No. 10 p. 6891-6897 1999/10 Research paper (scientific journal)

  77. Homologous recombination, but not DNA repair, is reduced in vertebrate cells deficient in RAD52

    Y Yamaguchi-Iwai, E Sonoda, JM Buerstedde, O Bezzubova, C Morrison, M Takata, A Shinohara, S Takeda

    MOLECULAR AND CELLULAR BIOLOGY Vol. 18 No. 11 p. 6430-6435 1998/11 Research paper (scientific journal)

  78. Homologous recombination and non-homologous end-joining pathways of DNA double-strand break repair have overlapping roles in the maintenance of chromosomal integrity in vertebrate cells

    M Takata, MS Sasaki, E Sonoda, C Morrison, M Hashimoto, H Utsumi, Y Yamaguchi-Iwai, A Shinohara, S Takeda

    EMBO JOURNAL Vol. 17 No. 18 p. 5497-5508 1998/09 Research paper (scientific journal)

  79. Base pair switching by interconversion of sugar puckers in DNA extended by proteins of RecA-family: A model for homology search in homologous genetic recombination

    T Nishinaka, A Shinohara, Y Ito, S Yokoyama, T Shibata

    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA Vol. 95 No. 19 p. 11071-11076 1998/09 Research paper (scientific journal)

  80. Xrcc3 is required for assembly of Rad51 complexes in vivo

    DK Bishop, U Ear, A Bhattacharyya, C Calderone, M Beckett, RR Weichselbaum, A Shinohara

    JOURNAL OF BIOLOGICAL CHEMISTRY Vol. 273 No. 34 p. 21482-21488 1998/08 Research paper (scientific journal)

  81. Rad52 associates with RPA and functions with Rad55 and Rad57 to assemble meiotic recombination complexes

    SL Gasior, AK Wong, Y Kora, A Shinohara, DK Bishop

    GENES & DEVELOPMENT Vol. 12 No. 14 p. 2208-2221 1998/07 Research paper (scientific journal)

  82. Multiple possible sites of BRCA2 interacting with DNA repair protein RAD51

    T Katagiri, H Saito, A Shinohara, H Ogawa, N Kamada, Y Nakamura, Y Miki

    GENES CHROMOSOMES & CANCER Vol. 21 No. 3 p. 217-222 1998/03 Research paper (scientific journal)

  83. Rad52 forms ring structures and co-operates with RPA in single-strand DNA annealing

    A Shinohara, M Shinohara, T Ohta, S Matsuda, T Ogawa

    GENES TO CELLS Vol. 3 No. 3 p. 145-156 1998/03 Research paper (scientific journal)

  84. Regulation of Rad51 function by c-Abl in response to DNA damage

    ZM Yuan, YY Huang, T Ishiko, S Nakada, T Utsugisawa, S Kharbanda, R Wang, P Sung, A Shinohara, R Weichselbaum, D Kufe

    JOURNAL OF BIOLOGICAL CHEMISTRY Vol. 273 No. 7 p. 3799-3802 1998/02 Research paper (scientific journal)

  85. Rad51-deficient vertebrate cells accumulate chromosomal breaks prior to cell death

    E Sonoda, MS Sasaki, JM Buerstedde, O Bezzubova, A Shinohara, H Ogawa, M Takata, Y Yamaguchi-Iwai, S Takeda

    EMBO JOURNAL Vol. 17 No. 2 p. 598-608 1998/01 Research paper (scientific journal)

  86. Stimulation by Rad52 of yeast Rad51-mediated recombination

    A Shinohara, T Ogawa

    NATURE Vol. 391 No. 6665 p. 404-407 1998/01 Research paper (scientific journal)

  87. Characterization of the roles of the Saccharomyces cerevisiae RAD54 gene and a homologue of RAD54, RDH54/TIL1, in mitosis and meiosis

    M Shinohara, E ShitaYamaguchi, JM Buerstedde, H Shinagawa, H Ogawa, A Shinohara

    GENETICS Vol. 147 No. 4 p. 1545-1556 1997/12 Research paper (scientific journal)

  88. Saccharomyces cerevisiae recA homologues RAD51 and DMC1 have both distinct and overlapping roles in meiotic recombination

    A Shinohara, S Gasior, T Ogawa, N Kleckner, DK Bishop

    GENES TO CELLS Vol. 2 No. 10 p. 615-629 1997/10 Research paper (scientific journal)

  89. RAB22 and RAB163/mouse BRCA2: Proteins that specifically interact with the RAD51 protein

    R Mizuta, JM LaSalle, HL Cheng, A Shinohara, H Ogawa, N Copeland, NA Jenkins, M Lalande, FW Alt

    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA Vol. 94 No. 13 p. 6927-6932 1997/06 Research paper (scientific journal)

  90. S phase specific formation of the human Rad51 protein nuclear foci in lymphocytes

    S Tashiro, N Kotomura, A Shinohara, K Tanaka, K Ueda, N Kamada

    ONCOGENE Vol. 12 No. 10 p. 2165-2170 1996/05 Research paper (scientific journal)

  91. Localization of mouse Rad51 and Lim15 proteins on meiotic chromosomes at late stages of prophase 1

    T Ikeya, A Shinohara, S Sato, S Tabata, T Ogawa

    GENES TO CELLS Vol. 1 No. 4 p. 379-389 1996/04 Research paper (scientific journal)

  92. RAD51 HOMOLOGS IN XENOPUS-LAEVIS - 2 DISTINCT GENES ARE HIGHLY EXPRESSED IN OVARY AND TESTIS

    K MAESHIMA, K MORIMATSU, A SHINOHARA, T HORII

    GENE Vol. 160 No. 2 p. 195-200 1995/07 Research paper (scientific journal)

  93. LOCALIZATION OF RECA-LIKE RECOMBINATION PROTEINS ON CHROMOSOMES OF THE LILY AT VARIOUS MEIOTIC STAGES

    M TERASAWA, A SHINOHARA, Y HOTTA, H OGAWA, T OGAWA

    GENES & DEVELOPMENT Vol. 9 No. 8 p. 925-934 1995/04 Research paper (scientific journal)

  94. CLONING OF HUMAN, MOUSE AND FISSION YEAST RECOMBINATION GENES HOMOLOGOUS TO RAD51 AND RECA

    A SHINOHARA, H OGAWA, Y MATSUDA, N USHIO, K IKEO, T OGAWA

    NATURE GENETICS Vol. 4 No. 3 p. 239-243 1993/07 Research paper (scientific journal)

  95. A CHICKEN RAD51 HOMOLOG IS EXPRESSED AT HIGH-LEVELS IN LYMPHOID AND REPRODUCTIVE-ORGANS

    O BEZZUBOVA, A SHINOHARA, RG MUELLER, H OGAWA, JM BUERSTEDDE

    NUCLEIC ACIDS RESEARCH Vol. 21 No. 7 p. 1577-1580 1993/04 Research paper (scientific journal)

  96. SIMILARITY OF THE YEAST RAD51 FILAMENT TO THE BACTERIAL RECA FILAMENT

    T OGAWA, YU, X, A SHINOHARA, EH EGELMAN

    SCIENCE Vol. 259 No. 5103 p. 1896-1899 1993/03 Research paper (scientific journal)

  97. FUNCTIONAL STRUCTURES OF THE RECA PROTEIN FOUND BY CHIMERA ANALYSIS

    T OGAWA, A SHINOHARA, H OGAWA, J TOMIZAWA

    JOURNAL OF MOLECULAR BIOLOGY Vol. 226 No. 3 p. 651-660 1992/08 Research paper (scientific journal)

  98. RAD51 PROTEIN INVOLVED IN REPAIR AND RECOMBINATION IN SACCHAROMYCES-CEREVISIAE IS A RECA-LIKE PROTEIN

    A SHINOHARA, H OGAWA, T OGAWA

    CELL Vol. 69 No. 3 p. 457-470 1992/05 Research paper (scientific journal)

Misc. 54

  1. Post-translational cleavage of Mei5 of Dmc1 mediator, Mei5-Sae3, in yeast meiosis.

    Mwaniki, S.W, Sawant P, Osenwankhae O, Ito, M, Fujita, Y, Furukohori, A, Shinohara A

    Genes to Cells Vol. accepted 2024/06

  2. Editorial: Meiosis: From Molecular Basis to Medicine

    Li W, Zhang L, Shinohara A, Keeney S

    Frontier in Cellularl and Developmental Biology Vol. 9 2021/12 Article, review, commentary, editorial, etc. (scientific journal)

  3. The baker’s yeast Msh4-Msh5 binds to double-strand break hotspots distant to chromosome axis to promote crossovers.

    G.N. Krishnaprasada, V.P. Ajith, Shinohara, M, Chakraborty, P, Lin, G. Steinmetz, L.M, Shinohara, A, Nishant K.T

    BioRxiv 2020/07

  4. Nuclear actin cable with multiple branches during yeast meiosis

    Tomoko Takagi, Masako Osumi, Akira Shinohara

    BioRxiv 2019/09

  5. Prophase pathway of arm-cohesin removal in budding yeast meiosis

    Challa Kiran, Miki Shinohara, Akira Shinohara

    GENES & GENETIC SYSTEMS Vol. 89 No. 6 p. 278-278 2014/12 Research paper, summary (international conference)

  6. Double-strand break repair-adox: Restoration of suppressed double-strand break repair during mitosis induces genomic instability

    Terasawa, Masahiro, Shinohara, Akira, Shinohara, Miki

    CANCER SCIENCE Vol. 105 No. 12 p. 1519-1525 2014/12 Book review, literature introduction, etc.

  7. Roles of Pal1 complex in Meiosis of Budding Yeast

    Santosh Kumar Gothwal, Takehiko Usui, Miki Shinohara, Akira Shinohara

    GENES & GENETIC SYSTEMS Vol. 88 No. 6 p. 379-379 2013/12 Research paper, summary (international conference)

  8. Regulatory mechanism of nuclear envelope remodelling during budding yeast meiosis

    Challa Kiran, Hbd Prasad Rao, Miki Shinohara, Akira Shinohara

    GENES & GENETIC SYSTEMS Vol. 88 No. 6 p. 379-379 2013/12 Research paper, summary (international conference)

  9. 構造特異的エンドヌクレアーゼ制御サブユニットSlx4の減数分裂前期における新しい機能(A novel function of Slx4, structure-specific endonuclease regulator subunit, in meiotic prophase)

    Higashide Mika, Shinohara Akira, Shinohara Miki

    Genes & Genetic Systems Vol. 88 No. 6 p. 375-375 2013/12

    Publisher: 日本遺伝学会
  10. M期における染色体分配とDNA二重鎖切断修復経路制御の連携機構解明

    寺澤 匡博, 篠原 彰, 篠原 美紀

    日本放射線影響学会大会講演要旨集 Vol. 56回 p. 156-156 2013/10

    Publisher: (一社)日本放射線影響学会
  11. 減数分裂性組換えにおけるSrs2ヘリカーゼの機能(The function of Srs2 helicase in meiotic recombination)

    Furihta Yuko, Sasanuma Hiroyuki, Shinohara Miki, Shinohara Akira

    Genes & Genetic Systems Vol. 87 No. 6 p. 403-403 2012/12

    Publisher: 日本遺伝学会
  12. Saccharomyces cerevisiaeにおける減数分裂特異的DNA二重鎖切断に反応した、DNA damage checkpoint蛋白質活性化抑制の分子機序(Molecular mechanisms to silence activation of DNA damage checkpoint proteins in response to meiosis-specific DNA double-strand breaks in Saccharomyces cerevisiae)

    Usui Takehiko, Shinohara Miki, Shinohara Akira

    Genes & Genetic Systems Vol. 87 No. 6 p. 437-437 2012/12

    Publisher: 日本遺伝学会
  13. 転写を介したDNA鎖切断により誘導されるDNA損傷応答

    逆井 良, 坂井 亜紀子, 前原 喜彦, 篠原 美紀, 篠原 彰

    日本放射線影響学会大会講演要旨集 Vol. 55回 p. 119-119 2012/09

    Publisher: (一社)日本放射線影響学会
  14. Meiosis-specific DNA double-strand breaks escape detection by DNA damage checkpoint mediator, Rad9, to avoid activation of Rad53 kinase in Saccharomyces cerevisiae

    Takehiko Usui, Miki Shinohara, Akira Shinohara

    GENES & GENETIC SYSTEMS Vol. 86 No. 6 p. 401-401 2011/12 Research paper, summary (international conference)

  15. Negative impacts on meiotic processes by activation of DNA damage checkpoint kinase Rad53, the budding yeast Chk2 ortholog

    Takehiko Usui, Akira Shinohara

    GENES & GENETIC SYSTEMS Vol. 85 No. 6 p. 444-444 2010/12 Research paper, summary (international conference)

  16. CDKによる非相同末端結合の新規制御メカニズムの解析(Cyclin-dependent protein kinase (CDK) regulates the repair mode of non-homologous end joining in budding yeast)

    松嵜 健一郎, 篠原 彰, 篠原 美紀

    日本生化学会大会・日本分子生物学会年会合同大会講演要旨集 Vol. 83回・33回 p. 2T2-4 2010/12

    Publisher: (公社)日本生化学会
  17. Analysis of a novel NHEJ regulatory mechanism by CDK

    Kenichiro Matsuzaki, Akira Shinohara, Miki Shinohara

    GENES & GENETIC SYSTEMS Vol. 84 No. 6 p. 490-490 2009/12 Research paper, summary (international conference)

  18. Functional analysis of the PCSS complex involved in homologous recombination in yeast

    Maki Tawaramoto, Hiroyuki Sasanuma, Miki Shinohara, Akira Shinohara

    GENES & GENETIC SYSTEMS Vol. 84 No. 6 p. 437-437 2009/12 Research paper, summary (international conference)

  19. Report from the Working Group of the Molecular Biology Society of Japan for the investigation of fraud in research papers

    Toshiki Tsurimoto, Tateo Itoh, Tsutomu Katayama, Hiroshi Kimura, Akira Shinohara

    GENES TO CELLS Vol. 14 No. 8 p. 903-908 2009/08 Rapid communication, short report, research note, etc. (scientific journal)

  20. 細胞骨格、核膜と核機能の連係 CDKによる核膜タンパク質Mps3の局在変化の制御(Interactions of nuclear functions with nuclear envelopes and cytoskeltons CDK-dependent control of dynamics of a nuclear envelope protein, Mps3, during meiosis)

    Rao H.B.D. Prasada, 篠原 美紀, 篠原 彰

    日本細胞生物学会大会講演要旨集 Vol. 61回 p. 113-113 2009/05

    Publisher: (一社)日本細胞生物学会
  21. 【染色体サイクル ゲノムの恒常性維持、継承とダイナミクス】染色体組換えの制御機構 減数分裂期組換え制御の分子メカニズム

    篠原 美紀, 篠原 彰

    蛋白質・核酸・酵素 Vol. 54 No. 4 p. 466-471 2009/03

    Publisher: 共立出版(株)
  22. [Molecular mechanism of meiotic crossover formation].

    Shinohara M, Shinohara A

    Tanpakushitsu kakusan koso. Protein, nucleic acid, enzyme Vol. 54 No. 4 Suppl p. 466-471 2009/03

  23. [Mechanisms of recombination on chromosomes: overview].

    Shinohara A

    Tanpakushitsu kakusan koso. Protein, nucleic acid, enzyme Vol. 54 No. 4 Suppl p. 447-449 2009/03

  24. 出芽酵母DNA損傷チェックポイント蛋白Rad9とRad53の減数分裂期における抑制機構と生理的意義

    第20回DNA複製、組換え、修復ワークショップ, 滋賀県彦根市 2009

  25. Actin dependent regulation of meiotic recombination

    Saori Mori, Miki Shinohara, Akira Shinohara

    GENES & GENETIC SYSTEMS Vol. 83 No. 6 p. 512-512 2008/12 Research paper, summary (international conference)

  26. DNA二重鎖切断の認識・修復の分子機構 最前線と今後の課題 非相同末端結合における酵母Xrs2の機能と細胞周期による制御

    松嵜 健一郎, 篠原 彰, 篠原 美紀

    日本放射線影響学会大会講演要旨集 Vol. 51回 p. 64-64 2008/11

    Publisher: (一社)日本放射線影響学会
  27. 減数分裂の分子メカニズム 減数分裂期特異的染色体構造体-シナプトネマ複合体-の形成制御

    篠原 彰, 篠原 美紀, 朱 智慧

    日本生化学会大会・日本分子生物学会年会合同大会講演要旨集 Vol. 81回・31回 p. 1S24-5 2008/11

    Publisher: (公社)日本生化学会
  28. 減数分裂期のDNA交換反応と染色体の形態形成のしくみ

    篠原 彰, 篠原 美紀

    蛋白質・核酸・酵素 Vol. 53 No. 11 p. 1315-1325 2008/09

    Publisher: 共立出版(株)
  29. [Mechanism of DNA recombination ad chromosomal morphogenesis in the meiotic phase].

    Shinohara A, Shinohara M

    Tanpakushitsu kakusan koso. Protein, nucleic acid, enzyme Vol. 53 No. 11 p. 1315-1325 2008/09

  30. The role of the CSM2 gene in recombination during meiosis of S. cerevisiae

    Eri Sanda, Akira Shinohara, Miki Shinohara

    GENES & GENETIC SYSTEMS Vol. 82 No. 6 p. 544-544 2007/12 Research paper, summary (international conference)

  31. Molecular mechanism of ZMM complex in homologous recombination during meiosis

    Shinohara, Miki, Shinohara, Akira

    GENES & GENETIC SYSTEMS Vol. 82 No. 6 p. 505-505 2007/12 Research paper, summary (international conference)

  32. 減数分裂期における核膜、細胞骨格、染色体配置によるDNA交換反応の制御

    篠原 彰, 小坂 宏道, 森 沙織, 篠原 美紀

    日本生化学会大会・日本分子生物学会年会合同大会講演要旨集 Vol. 80回・30回 p. 4S17-5 2007/11

    Publisher: (公社)日本生化学会
  33. Functional analysis of the CSM4 gene involved in meiosis recombination

    Hiromichi Kosaka, Hiroyuki Oshiumi, Miki Shinohara, Akira Shinohara

    GENES & GENETIC SYSTEMS Vol. 81 No. 6 p. 409-409 2006/12 Research paper, summary (international conference)

  34. Functional analysis of Spo16, a new synaptonemal complex component, in meiotic recombination

    Shinohara, Miki, Oshiumi, Hiroyuki, Shinohara, Akira

    GENES & GENETIC SYSTEMS Vol. 81 No. 6 p. 462-462 2006/12 Research paper, summary (international conference)

  35. A DNA exchange reaction during meiosis

    A Shinohara

    SEIKAGAKU Vol. 77 No. 5 p. 415-419 2005/05 Book review, literature introduction, etc.

  36. Roles of RecA homologues Rad51 and Dmc1 during meiotic recombination

    A. Shinohara, M. Shinohara

    Cytogenetic and Genome Research Vol. 107 No. 3-4 p. 201-207 2004 Article, review, commentary, editorial, etc. (scientific journal)

  37. DNA exchage on chromosomes: Molecular mechanisms of homologous recombinaion and its cellular functions

    Akira Shinohara, Miki Shinohara

    Cell Technology 2003/03

    Publisher: 秀潤社
  38. Rad51/RecA protein families and the associated proteins in eukaryotes

    A Shinohara, T Ogawa

    MUTATION RESEARCH-DNA REPAIR Vol. 435 No. 1 p. 13-21 1999/09 Book review, literature introduction, etc.

  39. Cytological analysis of PCNA in Meiosis

    KATO Harumi, OGAWA Hideyuki, SHINOHARA Akira

    Vol. 21 p. 378-378 1998/12/01

  40. 組換えタンパク質に結合したDNA分子構造の普遍性

    西中 太郎, 篠原 彰, 横山 茂之, 柴田 武彦

    日本分子生物学会年会プログラム・講演要旨集 Vol. 21 p. 380-380 1998/12/01

  41. Mutation and expression pattern of RAD51 protein

    MIZUTA Ryushin, UEMURA Takeshi, SHINOHARA Akira, OGAWA Hideyuki, KITAMURA Daisuke

    Vol. 21 p. 382-382 1998/12/01

  42. HOMOLOGOUS RECOMBINATION AND THE ROLES OF DOUBLE-STRAND BREAKS

    A SHINOHARA, T OGAWA

    TRENDS IN BIOCHEMICAL SCIENCES Vol. 20 No. 10 p. 387-391 1995/10

  43. FUNCTIONS OF RAD51 AND RAD52 PROTEINS INVOLVED IN RECOMBINATIONAL REPAIR

    A SHINOHARA, T OGAWA

    JOURNAL OF CELLULAR BIOCHEMISTRY p. 323-323 1995/03 Research paper, summary (international conference)

  44. Structure and function of RAD51 gene in eukaryote

    A. Shinohara, H. Ogawa, T. Ogawa

    Nippon rinsho. Japanese journal of clinical medicine Vol. 53 No. 1 p. 239-249 1995 Book review, literature introduction, etc.

  45. 真核生物のRAD51遺伝子の構造と機能

    篠原 彰, 小川 英行, 小川 智子

    日本臨床 Vol. 53 No. 1 p. p239-249 1995/01

    Publisher: 日本臨床社
  46. 相同組換えと二重鎮切断の役割

    Vol. 20 p. 287-291 1995

  47. 真核生物RAD51,RAD52遺伝子の種特異的相互作用

    Vol. 31 p. 93-100 1995

  48. A SPECIES-SPECIFIC INTERACTION OF RAD51 AND RAD52 PROTEINS IN EUKARYOTES

    T OGAWA, A SHINOHARA, T IKEYA

    ADVANCES IN BIOPHYSICS, VOL 31, 1995 Vol. 31 p. 93-100 1995 Book review, literature introduction, etc.

  49. 真核生物の組換え(修復)に働く遺伝子

    細胞工学 Vol. 13 No. 8 p. 710-719 1994

  50. 真核生物のRecA様組換え蛋白質,RAD51遺伝子の構造と機能

    Vol. 58 p. 567-576 1994

  51. Genes involved in genetic recombination (DNA vepair) in eukaryotes

    Cell Technology Vol. 13 No. 8 p. 710-719 1994

  52. RecA-like recombiration proteins in eukavyotes : Functions and structures of RAD51 gene

    Cold Spring Harb. Symp. Quant. Biol. Vol. 58 p. 567-576 1994

  53. 出茅酵母の減数分裂期組換え

    組織培養 Vol. 18,442-448 1992

  54. Meiotic Recombination in Saccharomyces cerevisiae.

    Tissue Culture Vol. 18,442-448 1992

Presentations 20

  1. Fignl1 AAA+ ATPase modulates the dynamics of Rad51 and Dmc1 ensembles

    Akira Shinohara

    Chromosome stability 2022 2022/12/15

  2. 減数分裂期のDNA交換と 染色体構造形成の制御のメカニズム

    篠原 彰

    神戸大学理学部生物科学科セミナー 2022/09/22

  3. Fignl1 AAA+ ATPase modulates the dynamics of Rad51 and Dmc1 ensembles

    Akira Shinohara

    FASEB meeting on recombination and genome rearrangement 2022/08/17

  4. Control of homologous recombination during meiosis and mitosis

    Akira Shinohara

    ANSC Reproductive Physiology, University of Illinois at Urbana-Champaign Urbana, USA 2022/03/30

  5. Human RAD51 paralog, SWSAP1, promotes RAD51 assembly by regulating the anti-recombinase, FIGNL1 AAA+ ATPase

    SHINOHARA Akira

    Seminar at IISER Thiruvananthapuram 2019/04/12

  6. Human RAD51 paralog, SWSAP1, promotes RAD51 assembly by regulating the anti-recombinase, FIGNL1 AAA+ ATPase

    SHINOHARA Akira

    Emerging Concepts in Chromosome Biology”,at IMP Vienna 2019/03/07

  7. Human RAD51 paralog, SWSAP1, promotes RAD51 assembly by regulating the anti-recombinase, FIGNL1 AAA+ ATPase

    SHINOHARA Akira

    Seminar at UC Davis, USA 2019/01/18

  8. Human RAD51 paralog, SWSAP1, promotes RAD51 assembly by regulating the anti-recombinase, FIGNL1 AAA+ ATPase

    SHINOHARA Akira

    Keystone symposium on DNA Replication and Genome Instability: From Mechanism to Disease 2019/01/14

  9. Control of Rad51-assembly and disassembly by Rad51 paralogues and anti-recombinases

    SHINOHARA Akira

    Chromosome stability meeting, Bangalore, India 2018/12/14

  10. Control of Rad51-assembly and disassembly by Rad51 paralogues and anti-recombinases

    SHINOHARA Akira

    Mini-symposium on chromosome Biology, Taipei 2018/12/11

  11. Control of Rad51-assembly and disassembly by Rad51 paralogues and anti-recombinases

    SHINOHARA Akira

    Genome biology 2018: Mechanisms in health and diseases Bangalore 2018/07/13

  12. Meiosis-specific prophase-like pathway controls cleavage-independent release of cohesin by Wapl phosphorylation.

    SHINOHARA Akira

    Gordon Research Conference on Meiosis, NH, USA 2018/06/10

  13. Control of Rad51-assembly and disassembly by Rad51 paralogues and anti-recombinases

    SHINOHARA Akira

    Abcam meeting on Mechanism of recombination, Cambridge UK 2018/05/19

  14. Control of Rad51-assembly and disassembly by Rad51 paralogues and anti-recombinases

    SHINOHARA Akira

    FASEB meeting on recombination and genome arrangement, Streamboat, CO, USA 2017/07/16

  15. Control of cleavage-independent removal of meiosis-specific cohesin

    SHINOHARA Akira

    Chromosome stability meeting, Trivandrum, India 2016/12/11

  16. Control of cleavage-independent removal of meiosis-specific cohesin

    SHINOHARA Akira

    Gordon Research Conference on Meiosis, New London, NH, USA 2016/06/11

  17. Control of Rad51 filaments by Rad51 mediator

    SHINOHARA Akira

    Abcam meeting on Mechanism of recombination, Alicante Spain 2016/05/19

  18. Control of cleavage-independent removal of cohesin

    SHINOHARA Akira

    FAOBMB meeting, Hyderabad, India 2015/11/26

  19. Control of cleavage-independent removal of meiosis-specific cohesin

    SHINOHARA Akira

    International RecA and chromosome dynamics meeting, Taipei 2015/09/16

  20. Control of cleavage-independent release of cohesin during meiosis

    SHINOHARA Akira

    EMBO workshop on meiosis, Oxford, UK 2015/09/01

Works 12

  1. 酵母Rad52蛋白質の生化学的解析

    1990 - 1993

  2. Biochemical characterization of Rad52 protein

    1990 - 1993

  3. サプレッサー変異による大腸菌RecA蛋白質の機能ドメインの解析

    1985 - 1989

  4. Characterization of functional domains of E. coli RecA protein by intragenic suppressors

    1985 - 1989

  5. 減数分裂期染色体機能部位におけるプロテインプロファイリング

    2004 -

  6. 減数分裂期組換えと生殖細胞形成

    2004 -

  7. 相同組換えによるゲノム安定化を介した発ガンの防御

    2004 -

  8. 真核生物の相同組換えの分子メカニズムの解明

    2004 -

  9. 減数分裂期におけるRAD51とDMC1の機能と解析

    1993 -

  10. 酵母Rad51蛋白質の生化学的解析

    1993 -

  11. Analysis of functions of RAD51 and DMC1 in meiosis

    1993 -

  12. Biochemical characterization of Rad51 protein from yeast.

    1993 -

Social Activities 28

  • 遺伝子から見える生命現象と病気について

    茨城県立水戸第1高校 大学模擬講義

    2022/09/29 - 2022/09/29

  • 遺伝子・蛋白質から見えるヒトの姿

    大阪大学 蛋白研 高校生の蛋白研セミナー

    2022/08/02 - 2022/08/02

  • 遺伝子・蛋白質から見えるヒトの姿

    大阪大学 蛋白質研究所 高校生のための蛋白研セミナー

    2022/07/30 - 2022/07/30

  • 研究の公正性をめぐる最近の話題

    大阪大学蛋白研 FD研修会

    2022/07/04 - 2022/07/04

  • 研究の公正性と研究不正

    山梨学院大学

    2022/02/21 - 2022/02/21

  • 遺伝子が語るヒトの姿

    大阪府立住吉高等学校

    2021/11/18 - 2021/11/18

  • 研究公正性と研究不正

    長岡技術科学大学

    2021/11/17 - 2021/11/17

  • 遺伝子が語るヒトの姿

    茨城県立水戸第1高校

    2021/10/29 - 2021/10/29

  • 研究公正と研究不正

    浜松学院大学

    2021/10/27 - 2021/10/27

  • 研究インテグリィテーと研究公正性

    国立研究開発法人 森林研究・整備機構 森林総合研究所

    2021/10/21 - 2021/10/21

  • 研究の公正性と研究不正

    大阪大学蛋白質研究所

    2021/06/17 - 2021/06/17

  • 研究の公正性(厳密性)と研究不正

    神戸学院大学薬学部

    2021/02/03 - 2021/02/03

  • 遺伝子が語る人の姿

    大阪府立住吉高等学校

    2020/11/19 - 2020/11/19

  • 遺伝子が語るヒトの姿

    茨城県立水戸第1高校

    2020/10/29 - 2020/10/29

  • 研究の公正性と研究不正

    滋賀県農業技術振興センター

    2020/02/27 - 2020/02/27

  • 研究の公正性と研究不正(オンライン配信)

    筑波技術大学

    2020/11 - 2020

  • 遺伝子が語る人の姿

    大阪府立住吉高等学校

    2019/12/17 - 2019/12/17

  • 研究の公正性と研究不正

    神戸学院大学法学部

    2019/12/04 - 2019/12/04

  • 遺伝子が語る人の姿

    沼津高専高等専門学校

    2019/11/19 - 2019/11/19

  • 遺伝子が語るヒトの姿

    大阪国際大和田高等学校

    2019/10/21 - 2019/10/21

  • 遺伝子・蛋白質が語るヒトの姿 (リサーチクラウドカフェ講演)

    大阪大学学術機構会議

    2019/10/04 - 2019/10/04

  • 研究公正性と研究不正

    日本赤十字九州国際大学

    2019/08/04 - 2019/08/04

  • 研究公正性と研究不正

    兵庫県立大学理学研究科

    2019/07/23 - 2019/07/23

  • 遺伝子から見えるヒトの姿

    甲南女子高等学校

    2023/03/17 -

  • 遺伝子から見えるヒトの姿

    大阪府立住吉高等学校

    2023/02/07 -

  • 研究の公正性と不正、研究費不正の現状

    常葉大学・短期大学

    2022/11/16 -

  • 遺伝子から見える生命現象と病気について

    大谷中学校・高等学校

    2022/11/07 -

  • 研究の公正性と不正

    修文大学 研究倫理講習会

    2022/08/03 -

Institutional Repository 5

Content Published in the University of Osaka Institutional Repository (OUKA)
  1. Mutational analysis of Mei5, a subunit of Mei5-Sae3 complex, in Dmc1-mediated recombination during yeast meiosis

    Mwaniki Stephen, Sawant Priyanka, Osemwenkhae Osaretin P., Fujita Yurika, Ito Masaru, Furukohri Asako, Shinohara Akira

    Genes to Cells Vol. 29 No. 8 p. 650-666 2024/06/25

  2. Replication protein-A, RPA, plays a pivotal role in the maintenance of recombination checkpoint in yeast meiosis

    Sampathkumar Arivarasan, Zhong Chen, Tang Yuting, Fujita Yurika, Ito Masaru, Shinohara Akira

    Scientific Reports Vol. 14 2024/04/25

  3. Fanconi anemia-associated mutation in RAD51 compromises the coordinated action of DNA-binding and ATPase activities

    Liu Sijia, Shinohara Akira, Furukohri Asako

    Journal of Biological Chemistry Vol. 299 No. 12 2023/12/01

  4. FIGNL1 AAA+ ATPase remodels RAD51 and DMC1 filaments in pre-meiotic DNA replication and meiotic recombination

    Ito Masaru, Furukohri Asako, Matsuzaki Kenichiro, Fujita Yurika, Toyoda Atsushi, Shinohara Akira

    Nature Communications Vol. 14 2023/10/27

  5. Functions of the RAD51 and RAD52 genes involved in genetic recombination in Saccharomyces cerevisiae.

    篠原 彰