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Structural basis for RNA polymerase II ubiquitylation and inactivation in transcription-coupled repair

Authors :
Kokic, Goran
Yakoub, George
van den Heuvel, Diana
Wondergem, Annelotte P.
van der Meer, Paula J.
van der Weegen, Yana
Chernev, Aleksandar
Fianu, Isaac
Fokkens, Thornton J.
Lorenz, Sonja
Urlaub, Henning
Cramer, Patrick
Luijsterburg, Martijn S.
Source :
Nature Structural and Molecular Biology; March 2024, Vol. 31 Issue: 3 p536-547, 12p
Publication Year :
2024

Abstract

During transcription-coupled DNA repair (TCR), RNA polymerase II (Pol II) transitions from a transcriptionally active state to an arrested state that allows for removal of DNA lesions. This transition requires site-specific ubiquitylation of Pol II by the CRL4CSAubiquitin ligase, a process that is facilitated by ELOF1 in an unknown way. Using cryogenic electron microscopy, biochemical assays and cell biology approaches, we found that ELOF1 serves as an adaptor to stably position UVSSA and CRL4CSAon arrested Pol II, leading to ligase neddylation and activation of Pol II ubiquitylation. In the presence of ELOF1, a transcription factor IIS (TFIIS)-like element in UVSSA gets ordered and extends through the Pol II pore, thus preventing reactivation of Pol II by TFIIS. Our results provide the structural basis for Pol II ubiquitylation and inactivation in TCR.

Details

Language :
English
ISSN :
15459993 and 15459985
Volume :
31
Issue :
3
Database :
Supplemental Index
Journal :
Nature Structural and Molecular Biology
Publication Type :
Periodical
Accession number :
ejs65429786
Full Text :
https://doi.org/10.1038/s41594-023-01207-0