Regulation of the RNAPII Pool Is Integral to the DNA Damage Response.

Tufegdžić Vidaković, Ana; Mitter, Richard; Kelly, Gavin P; Neumann, Michelle; Harreman, Michelle; Rodríguez-Martínez, Marta; Herlihy, Anna; Weems, Juston C et al. · Cell · 2020

basic_science · Level V

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Abstract

In response to transcription-blocking DNA damage, cells orchestrate a multi-pronged reaction, involving transcription-coupled DNA repair, degradation of RNA polymerase II (RNAPII), and genome-wide transcription shutdown. Here, we provide insight into how these responses are connected by the finding that ubiquitylation of RNAPII itself, at a single lysine (RPB1 K<sub>1268</sub>), is the focal point for DNA-damage-response coordination. K<sub>1268</sub> ubiquitylation affects DNA repair and signals RNAPII degradation, essential for surviving genotoxic insult. RNAPII degradation results in a shutdown of transcriptional initiation, in the absence of which cells display dramatic transcriptome alterations. Additionally, regulation of RNAPII stability is central to transcription recovery-persistent RNAPII depletion underlies the failure of this process in Cockayne syndrome B cells. These data expose regulation of global RNAPII levels as integral to the cellular DNA-damage response and open the intriguing possibility that RNAPII pool size generally affects cell-specific transcription programs in genome instability disorders and even normal cells.

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