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Aberrant RNA methylation triggers recruitment of an alkylation repair complex

Mol Cell. 2021-10; 
Ning Tsao, Joshua R Brickner, Rebecca Rodell, Adit Ganguly, Matthew Wood, Clement Oyeniran, Tanveer Ahmad, Hua Sun, Albino Bacolla, Lisheng Zhang, Valentina Lukinović, Jennifer M Soll, Brittany A Townley, Alexandre G Casanova, John A Tainer, Chuan He, Alessandro Vindigni, Nicolas Reynoird, Nima Mosammaparast
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Gene Synthesis TRMT61A cDNA was synthetically generated (GenScript), fused to SV40 NLS and cloned into pENTR-3C.  Get A Quote

摘要

Central to genotoxic responses is their ability to sense highly specific signals to activate the appropriate repair response. We previously reported that the activation of the ASCC-ALKBH3 repair pathway is exquisitely specific to alkylation damage in human cells. Yet the mechanistic basis for the selectivity of this pathway was not immediately obvious. Here, we demonstrate that RNA but not DNA alkylation is the initiating signal for this process. Aberrantly methylated RNA is sufficient to recruit ASCC, while an RNA dealkylase suppresses ASCC recruitment during chemical alkylation. In turn, recruitment of ASCC during alkylation damage, which is mediated by the E3 ubiquitin ligase RNF113A, suppresses transcriptio... More

关键词

ASCC, E3 ligase, RNA methylation, RNF113A, alkylation, genome stability, transcription