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DNA damage-induced transcription stress triggers the genome-wide degradation of promoter-bound Pol II.

Barbara Steurer ,
Roel C Janssens ,
Marit E Geijer ,
Fernando Aprile-Garcia ,
Bart Geverts ,
Arjan F Theil ,
Barbara Hummel ,
Martin E van Royen ,
Bastiaan Evers ,
René Bernards ,
Adriaan B Houtsmuller ,
Ritwick Sawarkar ,
Jurgen Marteijn

Abstract

The precise regulation of RNA Polymerase II (Pol II) transcription after genotoxic stress is crucial for proper execution of the DNA damage-induced stress response. While stalling of Pol II on transcription-blocking lesions (TBLs) blocks transcript elongation and initiates DNA repair in cis, TBLs additionally elicit a response in trans that regulates transcription genome-wide. Here we uncover that, after an initial elongation block in cis, TBLs trigger the genome-wide VCP-mediated proteasomal degradation of promoter-bound, P-Ser5-modified Pol II in trans. This degradation is mechanistically distinct from processing of TBL-stalled Pol II, is signaled via GSK3, and contributes to the TBL-induced transcription block, even in transcription-coupled repair-deficient cells. Thus, our data reveal the targeted degradation of promoter-bound Pol II as a critical pathway that allows cells to cope with DNA damage-induced transcription stress and enables the genome-wide adaptation of transcription to genotoxic stress.

More about this publication

Nature communications

Volume 13
Issue nr. 1
Pages 3624
Publication date 24-06-2022

Full text links

Publisher website (DOI) 10.1038/s41467-022-31329-w
Europe PubMed Central 35750669
Pubmed 35750669

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