SETDB1 regulates short interspersed nuclear elements and chromatin loop organization in mouse neural precursor cells
编号:148
稿件编号:24 访问权限:仅限参会人
更新:2024-10-28 14:15:03 浏览:133次
张贴报告
摘要
Transposable elements play a critical role in maintaining genome architecture during neurodevelopment. Short Interspersed Nuclear Elements (SINEs), a major subtype of transposable elements, are known to harbor binding sites for the CCCTC-binding factor (CTCF) and pivotal in orchestrating chromatin organization. However, the regulatory mechanisms controlling the activity of SINEs in the developing brain remains elusive. In our study, we conduct a comprehensive genome-wide epigenetic analysis in mouse neural precursor cells using ATAC-seq, ChIP-seq, whole genome bisulfite sequencing, in situ Hi-C, and RNA-seq. Our findings reveal that the SET domain bifurcated histone lysine methyltransferase 1 (SETDB1)-mediated H3K9me3, in conjunction with DNA methylation, restricts chromatin accessibility on a selective subset of SINEs in neural precursor cells. Mechanistically, loss of Setdb1 increases CTCF access to these SINE elements and contributes to chromatin loop reorganization. Moreover, de novo loop formation contributes to differential gene expression, including the dysregulation of genes enriched in mitotic pathways. This leads to the disruptions of cell proliferation in the embryonic brain after genetic ablation of Setdb1 both in vitro and in vivo. In summary, our study sheds light on the epigenetic regulation of SINEs in mouse neural precursor cells, suggesting their role in maintaining chromatin organization and cell proliferation during neurodevelopment.
关键字
transposable elements,SETDB1,H3K9me3,DNA methylation,chromatin loop,neurodevelopment
稿件作者
孙戴静
复旦大学脑科学研究院
朱月妍
复旦大学脑科学研究院
彭文竹
复旦大学脑科学研究院
郑胜辉
复旦大学脑科学研究院
翁洁
上海市精神卫生中心
董书龙
复旦大学脑科学研究院;复旦大学基础医学院
李嘉琪
复旦大学脑科学研究院
陈颀
复旦大学脑科学研究院
葛传慧
复旦大学脑科学研究院
廖立勇
复旦大学脑科学研究院
董宇昊
复旦大学脑科学研究院
刘赟
复旦大学脑科学研究院;复旦大学基础医学院
蒙伟达
复旦大学脑科学研究院;复旦大学基础医学院
江燕
复旦大学脑科学研究院
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