Akira Shinohara

About Akira Shinohara

Akira Shinohara, With an exceptional h-index of 48 and a recent h-index of 27 (since 2020), a distinguished researcher at Osaka University, specializes in the field of Molecular biology.

His recent articles reflect a diverse array of research interests and contributions to the field:

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

DNA double‐strand breaks regulate the cleavage‐independent release of Rec8‐cohesin during yeast meiosis

Chromosome architecture and homologous recombination in meiosis

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

Characterizing interaction between the juxtamembrane region of the single transmembrane protein and membrane using chemically synthesized peptides

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

Exo1 protects DNA nicks from ligation to promote crossover formation during meiosis

The role of conserved amino acid residues of Sae3 in Mei5–Sae3 complex for Dmc1 assembly in meiotic recombination

Akira Shinohara Information

University

Position

IPR

Citations(all)

14414

Citations(since 2020)

2385

Cited By

12688

hIndex(all)

48

hIndex(since 2020)

27

i10Index(all)

77

i10Index(since 2020)

62

Email

University Profile Page

Google Scholar

Akira Shinohara Skills & Research Interests

Molecular biology

Top articles of Akira Shinohara

Title

Journal

Author(s)

Publication Date

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

bioRxiv

Arivarasan Sampathkumar

Masaru Ito

Yurika Fujita

Akira Shinohara

2023

DNA double‐strand breaks regulate the cleavage‐independent release of Rec8‐cohesin during yeast meiosis

Genes to Cells

Ghanim Fajish

Kiran Challa

Sagar Salim

Ajith Vp

Stephen Mwaniki

...

2024/1

Chromosome architecture and homologous recombination in meiosis

Masaru Ito

Akira Shinohara

2023/1/6

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

Nature Communications

Masaru Ito

Asako Furukohri

Kenichiro Matsuzaki

Yurika Fujita

Atsushi Toyoda

...

2023/10/27

Characterizing interaction between the juxtamembrane region of the single transmembrane protein and membrane using chemically synthesized peptides

STAR protocols

Takeshi Sato

Akira Shinohara

2023/9/15

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

Frontiers in Cell and Developmental Biology

Miki Shinohara

Akira Shinohara

2023/5/18

Exo1 protects DNA nicks from ligation to promote crossover formation during meiosis

Plos Biology

Michael Gioia

Lisette Payero

Sagar Salim

Ghanim Fajish V

Amamah F Farnaz

...

2023/4/20

The role of conserved amino acid residues of Sae3 in Mei5–Sae3 complex for Dmc1 assembly in meiotic recombination

Genes & Genetic Systems

Priyanka Sawant

Stephen Mwaniki

Yurika Fujita

Masaru Ito

Asako Furukohri

...

2023/2/1

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

Journal of Biological Chemistry

Sijia Liu

Akira Shinohara

Asako Furukohri

2023/12/1

Rad9, a 53BP1 ortholog of budding yeast, is insensitive to Spo11-induced double-strand breaks during meiosis

Frontiers in Cell and Developmental Biology

Takehiko Usui

Akira Shinohara

2021/3/25

Regulation of Msh4-Msh5 association with meiotic chromosomes in budding yeast

Genetics

Krishnaprasad G Nandanan

Sagar Salim

Ajith V Pankajam

Miki Shinohara

Gen Lin

...

2021/10/1

SCFCdc4 ubiquitin ligase regulates synaptonemal complex formation during meiosis

Life Science Alliance

Zhihui Zhu

Mohammad Bani Ismail

Miki Shinohara

Akira Shinohara

2021/2/1

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

elife

Hanumanthu BD Prasada Rao

Takeshi Sato

Kiran Challa

Yurika Fujita

Miki Shinohara

...

2021/9/29

Ultrastructural analysis in yeast reveals a meiosis-specific actin-containing nuclear bundle

Communications biology

Tomoko Takagi

Masako Osumi

Akira Shinohara

2021/8/25

The synaptonemal complex central region modulates crossover pathways and feedback control of meiotic double-strand break formation

Nucleic acids research

Min-Su Lee

Mika T Higashide

Hyungseok Choi

Ke Li

Soogil Hong

...

2021/7/21

Enhanced processivity of Dnmt1 by monoubiquitinated histone H3

Genes to cells

Yuichi Mishima

Laura Brueckner

Saori Takahashi

Toru Kawakami

Junji Otani

...

2020/1

Dual roles of yeast Rad51 N-terminal domain in repairing DNA double-strand breaks

Nucleic Acids Research

Tai-Ting Woo

Chi-Ning Chuang

Mika Higashide

Akira Shinohara

Ting-Fang Wang

2020/9/4

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

International Journal of Molecular Sciences

Ying Zhang

Takuya Suzuki

Ke Li

Santosh K Gothwal

Miki Shinohara

...

2020/4/12

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

Nature communications

Hisashi Tatebe

Chew Theng Lim

Hiroki Konno

Kazuhiro Shiozaki

Akira Shinohara

...

2020/1/17

See List of Professors in Akira Shinohara University(Osaka University)

Co-Authors

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