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KAP1、HP1 和 G9a/GLP 在小鼠胚胎干细胞中沉默两细胞特异性逆转录转座子 MERVL 中的不同作用。

Distinct roles of KAP1, HP1 and G9a/GLP in silencing of the two-cell-specific retrotransposon MERVL in mouse ES cells.

机构信息

Department of Medical Genetics, Life Sciences Institute, 2350 Health Sciences Mall, University of British Columbia, Vancouver, British Columbia V6T 1Z3, Canada.

出版信息

Epigenetics Chromatin. 2013 Jun 4;6(1):15. doi: 10.1186/1756-8935-6-15.

Abstract

BACKGROUND

In mouse embryonic stem cells (mESCs), transcriptional silencing of numerous class I and II endogenous retroviruses (ERVs), including IAP, ETn and MMERVK10C, is dependent upon the H3K9 methyltransferase (KMTase) SETDB1/ESET and its binding partner KAP1/TRIM28. In contrast, the H3K9 KMTases G9a and GLP and HP1 proteins are dispensable for this process. Intriguingly, MERVL retroelements are actively transcribed exclusively in the two-cell (2C) embryo, but the molecular basis of silencing of these class III ERVs at later developmental stages has not been systematically addressed.

RESULTS

Here, we characterized the roles of these chromatin factors in MERVL silencing in mESCs. While MMERVK10C and IAP ERVs are bound by SETDB1 and KAP1 and are induced following their deletion, MERVL ERVs show relatively low levels of SETDB1 and KAP1 binding and are upregulated exclusively following KAP1 depletion, indicating that KAP1 influences MERVL expression independent of SETDB1. In contrast to class I and class II ERVs, MERVL and MERVL LTR-driven genic transcripts are also upregulated following depletion of G9a or GLP, and G9a binds directly to these ERVs. Consistent with a direct role for H3K9me2 in MERVL repression, these elements are highly enriched for G9a-dependent H3K9me2, and catalytically active G9a is required for silencing of MERVL LTR-driven transcripts. MERVL is also derepressed in HP1α and HP1β KO ESCs. However, like KAP1, HP1α and HP1β are only modestly enriched at MERVL relative to IAP LTRs. Intriguingly, as recently shown for KAP1, RYBP, LSD1 and G9a-deficient mESCs, many genes normally expressed in the 2C embryo are also induced in HP1 KO mESCs, revealing that aberrant expression of a subset of 2C-specific genes is a common feature in each of these KO lines.

CONCLUSIONS

Our results indicate that G9a and GLP, which are not required for silencing of class I and II ERVs, are recruited to MERVL elements and play a direct role in silencing of these class III ERVs, dependent upon G9a catalytic activity. In contrast, induction of MERVL expression in KAP1, HP1α and HP1β KO ESCs may occur predominantly as a consequence of indirect effects, in association with activation of a subset of 2C-specific genes.

摘要

背景

在小鼠胚胎干细胞(mESCs)中,众多 I 类和 II 类内源性逆转录病毒(ERVs)的转录沉默,包括 IAP、ETn 和 MMERVK10C,依赖于 H3K9 甲基转移酶(KMTase)SETDB1/ESET 及其结合伴侣 KAP1/TRIM28。相比之下,H3K9 KMTases G9a 和 GLP 和 HP1 蛋白对于这个过程不是必需的。有趣的是,MERVL 逆转录元件仅在二细胞(2C)胚胎中被转录,但在后期发育阶段这些 III 类 ERVs 的沉默的分子基础尚未得到系统解决。

结果

在这里,我们研究了这些染色质因子在 mESCs 中 MERVL 沉默中的作用。虽然 MMERVK10C 和 IAP ERVs 被 SETDB1 和 KAP1 结合,并在其缺失后被诱导,但 MERVL ERVs 显示出相对较低水平的 SETDB1 和 KAP1 结合,并仅在 KAP1 耗尽后上调,表明 KAP1 影响 MERVL 表达独立于 SETDB1。与 I 类和 II 类 ERVs 相反,MERVL 和 MERVL LTR 驱动的基因转录物也在 G9a 或 GLP 耗尽后上调,并且 G9a 直接结合这些 ERVs。与 H3K9me2 在 MERVL 抑制中的直接作用一致,这些元件高度富集 G9a 依赖性 H3K9me2,并且催化活性 G9a 是沉默 MERVL LTR 驱动转录物所必需的。MERVL 在 HP1α 和 HP1β KO ESCs 中也被解除抑制。然而,与 KAP1 一样,HP1α 和 HP1β 在 MERVL 相对于 IAP LTRs 上的富集程度也相对较低。有趣的是,与最近 KAP1、RYBP、LSD1 和 G9a 缺陷 mESCs 中显示的一样,许多在 2C 胚胎中正常表达的基因也在 HP1 KO mESCs 中被诱导,表明一组 2C 特异性基因的异常表达是这些 KO 系中的一个共同特征。

结论

我们的结果表明,G9a 和 GLP,它们对于 I 类和 II 类 ERVs 的沉默不是必需的,被招募到 MERVL 元件上,并依赖于 G9a 的催化活性,在这些 III 类 ERVs 的沉默中发挥直接作用。相比之下,在 KAP1、HP1α 和 HP1β KO ESCs 中 MERVL 表达的诱导可能主要是间接效应的结果,与一组 2C 特异性基因的激活有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4973/3682905/3fba057edf9a/1756-8935-6-15-1.jpg

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