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寻求平衡:Zfp281和Mll2对小鼠胚胎干细胞中转座元件的调控

Striking a balance: regulation of transposable elements by Zfp281 and Mll2 in mouse embryonic stem cells.

作者信息

Dai Qian, Shen Yang, Wang Yan, Wang Xin, Francisco Joel Celio, Luo Zhuojuan, Lin Chengqi

机构信息

Institute of Life Sciences, the Key Laboratory of Developmental Genes and Human Disease, Southeast University, Nanjing 210096, China.

Bioinformatics Group, A*STAR Genome Institute of Singapore, 60 Biopolis Street, Singapore 138672, Singapore.

出版信息

Nucleic Acids Res. 2017 Dec 1;45(21):12301-12310. doi: 10.1093/nar/gkx841.

Abstract

Transposable elements (TEs) compose about 40% of the murine genome. Retrotransposition of active TEs such as LINE-1 (L1) tremendously impacts genetic diversification and genome stability. Therefore, transcription and transposition activities of retrotransposons are tightly controlled. Here, we show that the Krüppel-like zinc finger protein Zfp281 directly binds and suppresses a subset of retrotransposons, including the active young L1 repeat elements, in mouse embryonic stem (ES) cells. In addition, we find that Zfp281-regulated L1s are highly enriched for 5-hydroxymethylcytosine (5hmC) and H3K4me3. The COMPASS-like H3K4 methyltransferase Mll2 is the major H3K4me3 methylase at the Zfp281-regulated L1s and required for their proper expression. Our studies also reveal that Zfp281 functions partially through recruiting the L1 regulators DNA hydroxymethylase Tet1 and Sin3A, and restricting Mll2 at these active L1s, leading to their balanced expression. In summary, our data indicate an instrumental role of Zfp281 in suppressing the young active L1s in mouse ES cells.

摘要

转座元件(TEs)约占小鼠基因组的40%。诸如LINE-1(L1)等活跃转座元件的逆转座对基因多样化和基因组稳定性有巨大影响。因此,逆转座子的转录和转座活性受到严格控制。在此,我们表明,Krüppel样锌指蛋白Zfp281在小鼠胚胎干细胞(ES细胞)中直接结合并抑制一部分逆转座子,包括活跃的年轻L1重复元件。此外,我们发现Zfp281调控的L1s高度富集5-羟甲基胞嘧啶(5hmC)和H3K4me3。类COMPASS的H3K4甲基转移酶Mll2是Zfp281调控的L1s处主要的H3K4me3甲基化酶,且对其正常表达是必需的。我们的研究还揭示,Zfp281部分通过招募L1调控因子DNA羟甲基化酶Tet1和Sin3A,并在这些活跃的L1s处限制Mll2发挥作用,从而导致它们的平衡表达。总之,我们的数据表明Zfp281在抑制小鼠ES细胞中年轻活跃L1s方面发挥着重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a7d3/5716208/7308edb840d6/gkx841fig1.jpg

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