ZC3H4 safeguards genome integrity by preventing transcription-replication conflicts at noncoding RNA loci.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 40531993.
- Also identified by DOI 10.1126/sciadv.adt8346 and PMC identifier 12175896.
- Licence recorded as CC BY-NC.
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Abstract
The cellular networks that maintain genome stability encompass numerous pathways involved in all aspects of nucleic acid metabolism. Through bioinformatic analysis, we identified the Zinc Finger CCCH-Type Containing 4 protein (ZC3H4), a suppressor of noncoding RNA (ncRNA) production, as a pivotal player in this system. Experimentally, ZC3H4 deficiency led to increased DNA damage, abnormal mitosis, and cellular senescence. Biochemical analysis and super-resolution microscopy revealed that the loss of ZC3H4 increased replication stress (RS)-a major driver of genome instability-by inducing a hypertranscription state that promoted R loop formation and transcription-replication conflicts (TRCs), both of which drive RS. Further bioinformatic analysis demonstrated that ZC3H4 preferentially binds to genomic regions prone to TRCs and R loops, where it suppresses ncRNA bursts, functioning as part of the Restrictor complex. Our findings identify ZC3H4 as a crucial factor in maintaining genome integrity, strategically positioned at the critical intersection of DNA and RNA synthesis.
Medical subject headings
- RNA, Untranslated
- Genomic Instability
- DNA Replication
- Transcription, Genetic
- RNA-Binding Proteins
- Genetic Loci