Histone H1 regulates non-coding RNA turnover on chromatin in a m6A-dependent manner.
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ABSTRACT: Linker histones are highly abundant chromatin-associated proteins with well-established structural roles in chromatin and as general transcriptional repressors. In addition, it has been long proposed that histone H1 exerts context-specific effects on gene expression. Here, we identify a function of histone H1 in chromatin structure and transcription using a range of genomic approaches. In the absence of histone H1, there is an increase in the transcription of non-coding RNAs, together with reduced levels of m6A modification leading to their accumulation on chromatin and causing replication-transcription conflicts. This strongly suggests that histone H1 prevents non-coding RNA transcription and regulates non-coding transcript turnover on chromatin. Accordingly, altering the m6A RNA methylat
SUBMITTER: Fernandez-Justel JM
PROVIDER: S-EPMC7613722 | biostudies-literature | 2022 Sep
REPOSITORIES: biostudies-literature
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