Structural basis of nucleosome remodeling by Cockayne syndrome B homologue Komagataella phaffii Rad26

Y Yutaro Fukushima C Chiaki Kinoshita L Lumi Negishi (Institute for Quantitative Biosciences, The University of Tokyo) T Tomoya Kujirai Y Yuki Kobayashi M Mitsuo Ogasawara H Haruhiko Ehara S Shun-ichi Sekine W Wataru Kagawa H Hitoshi Kurumizaka Y Yoshimasa Takizawa

Abstract

Abstract Rad26, a yeast homologue of mammalian Cockayne syndrome protein B (CSB), plays an essential role in transcription-coupled nucleotide excision repair (TC-NER). Rad26/CSB binds RNA polymerase II stalled at DNA lesions and recruits DNA repair factors, functioning as a molecular scaffold. In addition, Rad26/CSB possesses nucleosome-remodeling activity that may help restore transcription after DNA repair. Here we determine the cryo-electron microscopy structure of the Rad26/CSB-nucleosome complex. Rad26/CSB binds near the nucleosomal entry/exit region (superhelical location ±6) through a unique mechanism in which its ATPase domains, Lobe 1 and Lobe 2, engage nucleosomal DNA in a reverse orientation compared with other remodelers such as Snf2 and Ino80. Mutational, biochemical, and crosslinking mass-spectrometric analyses demonstrate the requirement of the KR loop for nucleosome binding and remodeling. Furthermore, we show that N-terminal auto-inhibition involves long-range contacts between the disordered N-terminus and the Lobe 2 region, and is relieved by mutations of Leu8 and Leu11. These findings reveal the structural basis of Rad26/CSB-mediated nucleosome remodeling in TC-NER.

Article Details

Volume / Issue Vol. 17, Issue 1
Published June 24, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (11)

Y

Yutaro Fukushima

C

Chiaki Kinoshita

L

Lumi Negishi

Institute for Quantitative Biosciences, The University of Tokyo

T

Tomoya Kujirai

Y

Yuki Kobayashi

M

Mitsuo Ogasawara

H

Haruhiko Ehara

S

Shun-ichi Sekine

W

Wataru Kagawa

H

Hitoshi Kurumizaka

Y

Yoshimasa Takizawa