Yoshifumi Nishimura

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Yokohama National University
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Japan

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Recent Grants

Grant: Open

Structural Biology on Chromatin Dynamics

Open Date: 2023-04-01

Close Date: 2027-03-01

Grant: Open

Basis for Supporting Innovative Drug Discovery and Life Science Research

Open Date: 2022-04-01

Close Date: 2027-03-01

Grant: Close

NMR Platform

Open Date: 2021-04-01

Close Date: 2026-03-01

Grant: Close

Basis for Supporting Innovative Drug Discovery and Life Science Research

Open Date: 2017-04-01

Close Date: 2022-03-01

Grant: Close

NMR platform

Open Date: 2016-04-01

Close Date: 2021-03-01

Articles (12)

Structural polymorphism of the PH domain in TFIIH

The general transcription factor TFIIH is a multi-subunit complex involved in transcription, DNA repair, and cell cycle in eukaryotes. In the human p62 subunit and the budding yeast Saccharomyces cerevisiae Tfb1 subunit of TFIIH, the pleckstrin homology (PH) domain (hPH/scPH) recruits TFIIH to transcription-start and DNA-damage sites by interacting with an acidic intrinsically disordered region in transcription and repair factors. Whereas metazoan PH domains are highly conserved and adopt a similar structure, fungal PH domains are divergent and only the scPH structure is available. Here, we have determined the structure of the PH domain from Tfb1 of fission yeast Schizosaccharomyces pombe (spPH) by NMR. spPH holds an architecture, including the core and external backbone structures, that is closer to hPH than to scPH despite having higher amino acid sequence identity to scPH. In addition, the predicted target-binding site of spPH shares more amino acid similarity with scPH, but spPH contains several key residues identified in hPH as required for specific binding. Using chemical shift perturbation, we have identified binding modes of spPH to spTfa1, a homologue of hTFIIEα, and to spRhp41, a homologue of the repair factors hXPC and scRad4. Both spTfa1 and spRhp41 bind to a similar but distinct surface of spPH by modes that differ from those of target proteins binding to hPH and scPH, revealing that the PH domain of TFIIH interacts with its target proteins in a polymorphic manner in Metazoa, and budding and fission yeasts.

Year:

2023

Collaborators (11)

Masahiko Okuda

Project Associate Professor

Yokohama National University

JAPAN

Masanori Osawa

Professor

Keio University

JAPAN

Chen Davidovich

MONASH UNIVERSITY

AUSTRALIA

Takayuki Chikata

Lecturer

Kumamoto University

JAPAN

Hirofumi Aso

Specially Appointed Assistant Professor

Tokyo Medical and Dental University

JAPAN

Yuki Yamaguchi

Professor

Tokyo Institute of Technology

JAPAN

Mahoko Ueda

Assistant Professor

Tokyo Medical and Dental University

JAPAN

Romain Amyot

Assistant Professor

Kanazawa University

JAPAN

Eiji Morita

Hirosaki University

JAPAN

yasuhiro arimura

Rockefeller University

UNITED STATES

So Nakagawa

Associate Professor

Tokai University School of Medicine

JAPAN
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