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组蛋白甲基转移酶EHMT2通过与LINE-1调控元件结合对全能性相关基因座进行协同抑制。

Coordinated repression of totipotency-associated gene loci by histone methyltransferase EHMT2 through binding to LINE-1 regulatory elements.

作者信息

Chatterjee K, Uyehara C M, Kasliwal K, Madhuranath S, Scourzic L, Polyzos A, Apostolou E, Stadtfeld M

机构信息

Sanford I. Weill Department of Medicine, Sandra and Edward Meyer Cancer Center, Weill Cornell Medicine, New York, NY 10065, USA.

出版信息

bioRxiv. 2024 Dec 20:2024.12.18.629181. doi: 10.1101/2024.12.18.629181.

Abstract

Mouse embryonic stem cells (mESCs) and other naïve pluripotent stem cells can reverse typical developmental trajectories and, at low frequency, de-differentiate into 2-cell-like cells (2CLCs) that resemble the mammalian embryo during zygotic genome activation (ZGA). This affords the opportunity to reveal molecular principles that govern the pre-implantation stages of mammalian development. We leveraged a multipurpose allele for acute protein depletion and efficient immunoprecipitation to dissect the molecular functions of the chromatin repressor EHMT2, a candidate antagonist of the mESC-to-2CLC transition. This allowed us to define categories of EHMT2 target genes characterized by distinct modes of EHMT2 chromatin engagement and repression. Most notably, EHMT2 directly represses large clusters of co-regulated gene loci that comprise a significant fraction of the 2CLC-specific transcriptome by initiating H3K9me2 spreading from distal LINE-1 elements. EHMT2 counteracts the recruitment of the activator DPPA2/4 to promoter-proximal endogenous retroviral elements (ERVs) at 2CLC genes. EHMT2 depletion elevates the expression of ZGA-associated transcripts in 2CLCs and synergizes with spliceosome inhibition and retinoic acid signaling in facilitating the mESC-to-2CLC transition. In contrast to ZGA-associated genes, repression of germ layer-associated transcripts by EHMT2 occurs outside of gene clusters in collaboration with ZFP462 and entails binding to non-repeat enhancers. Our observations show that EHMT2 attenuates the bidirectional differentiation potential of mouse pluripotent stem cells and define molecular modes for locus-specific transcriptional repression by this essential histone methyltransferase.

摘要

小鼠胚胎干细胞(mESCs)和其他原始多能干细胞可以逆转典型的发育轨迹,并在低频情况下逆分化为类似二细胞期细胞(2CLCs)的细胞,这些细胞在合子基因组激活(ZGA)期间类似于哺乳动物胚胎。这为揭示控制哺乳动物发育植入前阶段的分子原理提供了机会。我们利用一个多用途等位基因进行急性蛋白质消耗和高效免疫沉淀,以剖析染色质阻遏物EHMT2的分子功能,EHMT2是mESC向2CLC转变的候选拮抗剂。这使我们能够定义EHMT2靶基因的类别,其特征在于EHMT2染色质结合和抑制的不同模式。最值得注意的是,EHMT2通过启动从远端LINE-1元件扩散的H3K9me2,直接抑制大量共同调控的基因座簇,这些基因座构成了2CLC特异性转录组的很大一部分。EHMT2抵消了激活剂DPPA2/4在2CLC基因的启动子近端内源性逆转录病毒元件(ERVs)上的募集。EHMT2的缺失提高了2CLCs中ZGA相关转录本的表达,并在促进mESC向2CLC转变方面与剪接体抑制和视黄酸信号协同作用。与ZGA相关基因相反,EHMT2对胚层相关转录本的抑制发生在基因簇之外,与ZFP462协同作用,并需要与非重复增强子结合。我们的观察结果表明,EHMT2减弱了小鼠多能干细胞的双向分化潜能,并定义了这种必需的组蛋白甲基转移酶对基因座特异性转录抑制的分子模式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/85be/11702699/eae2219ab11b/nihpp-2024.12.18.629181v1-f0001.jpg

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