| Literature DB >> 34196368 |
Peng Xu1, Lan Zhang1, Yao Xiao1, Wei Li1, Zhiqiang Hu2, Rukui Zhang1, Jin Li1, Feizhen Wu3, Yanping Xi1, Qingping Zou1, Zhentian Wang3, Rui Guo3, Honghui Ma3, Shihua Dong1, Min Xiao1, Zhicong Yang1, Xiaoguang Ren1, Chaochun Wei2, Wenqiang Yu1.
Abstract
The well-established functions of UHRF1 converge to DNA biological processes, as exemplified by DNA methylation maintenance and DNA damage repair during cell cycles. However, the potential effect of UHRF1 on RNA metabolism is largely unexplored. Here, we revealed that UHRF1 serves as a novel alternative RNA splicing regulator. The protein interactome of UHRF1 identified various splicing factors. Among them, SF3B3 could interact with UHRF1 directly and participate in UHRF1-regulated alternative splicing events. Furthermore, we interrogated the RNA interactome of UHRF1, and surprisingly, we identified U snRNAs, the canonical spliceosome components, in the purified UHRF1 complex. Unexpectedly, we found H3R2 methylation status determines the binding preference of U snRNAs, especially U2 snRNAs. The involvement of U snRNAs in UHRF1-containing complex and their binding preference to specific chromatin configuration imply a finely orchestrated mechanism at play. Our results provided the resources and pinpointed the molecular basis of UHRF1-mediated alternative RNA splicing, which will help us better our understanding of the physiological and pathological roles of UHRF1 in disease development.Entities:
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Year: 2021 PMID: 34196368 DOI: 10.1093/hmg/ddab178
Source DB: PubMed Journal: Hum Mol Genet ISSN: 0964-6906 Impact factor: 6.150