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YTHDC1 m6A-dependent and m6A-independent functions converge to preserve DNA damage response (RNAP II ChIP-Seq)

GSE239332 Homo sapiens Genome binding/occupancy profiling by high throughput sequencing 4 samples Submitted 2024/05/07 Platform GPL24676
Summary
Cells have evolved a robust and highly regulated DNA damage response to preserve their genomic integrity. Although increasing evidence highlights the relevance of RNA regulation, our understanding of its impact on a fully efficient DNA damage response remains limited. Here, through a targeted CRISPR-knockout screen, we identified RNA binding proteins and modifiers that participate in mediating the p53 response. Among the top hits, m6A reader YTHDC1 was identified as a master regulator of p53 expression. YTHDC1 binds to the transcription start sites ofTP53and other genes involved in DNA damage response, promoting their transcriptional elongation. YTHDC1 deficiency leads to reducedTP53expression, and also retention of introns leading to aberrant protein production of key DNA damage factors. While intron retention is dependent on m6A, YTHDC1 favoursTP53transcriptionalpause-release independently of m6A. Depletion of YTHDC1 causes genomic instability and aberrant cancer cell proliferation mediated by genes regulated by YTHDC1. Our results uncover YTHDC1 as an orchestrator of the DNA damage response through distinct mechanisms of co-transcriptional mRNA regulation.
Published in
YTHDC1 m(6)A-dependent and m(6)A-independent functions converge to preserve the DNA damage response
Elvira-Blázquez D, Fernández-Justel JM, Arcas A et al. · The EMBO journal 2024 · PMID 38951610 · doi:10.1038/s44318-024-00153-x
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Also filed as BioProject PRJNA998830 and SRA study SRP451557. Searching any of these in the dataset finder brings you back here.

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