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诱导多能干细胞中X染色体剂量影响DNA甲基化重编程的动力学

Dynamics of DNA Methylation Reprogramming Influenced by X Chromosome Dosage in Induced Pluripotent Stem Cells.

作者信息

Janiszewski Adrian, Song Juan, Vanheer Lotte, De Geest Natalie, Pasque Vincent

机构信息

Leuven Stem Cell Institute, Leuven Cancer Institute, Department of Development and Regeneration, KU Leuven - University of Leuven, Leuven, Belgium.

出版信息

Epigenet Insights. 2018 Oct 14;11:2516865718802931. doi: 10.1177/2516865718802931. eCollection 2018.

Abstract

How the epigenome of one cell type is remodeled during reprogramming into another unrelated type of cell remains unclear. Overexpression of transcription factors in somatic cells enables the induction of induced pluripotent stem cells (iPSCs). This process entails genome-wide remodeling of DNA methylation, chromatin, and transcription. Recent work suggests that the number of active X chromosomes present in a cell influences remodeling of DNA methylation during somatic cell reprogramming to mouse iPSCs. Female iPSCs with 2 active X chromosomes display global DNA hypomethylation, whereas male XY iPSCs show DNA methylation levels similar to the somatic cells they are derived from. Global DNA methylation erasure in female iPSCs takes place genome-wide and involves repression of DNA methyltransferases. However, on loss of one X chromosome, female iPSCs acquire a DNA methylation landscape resembling that of XY iPSCs. Therefore, it is the X chromosome dosage that dictates global DNA methylation levels in iPSCs. Here, we discuss the evidence that links X chromosome dosage with the regulation of DNA methylation in pluripotent stem cells. We focus on iPSCs reprogramming studies, where X chromosome status is a novel factor impacting our understanding of epigenetic remodeling.

摘要

一种细胞类型的表观基因组在重编程为另一种不相关细胞类型的过程中是如何重塑的,目前尚不清楚。在体细胞中过表达转录因子能够诱导产生诱导多能干细胞(iPSC)。这个过程需要在全基因组范围内对DNA甲基化、染色质和转录进行重塑。最近的研究表明,细胞中活性X染色体的数量会影响体细胞重编程为小鼠iPSC过程中DNA甲基化的重塑。具有两条活性X染色体的雌性iPSC表现出全基因组DNA低甲基化,而雄性XY iPSC的DNA甲基化水平与它们所源自的体细胞相似。雌性iPSC中的全基因组DNA甲基化消除在全基因组范围内发生,并且涉及DNA甲基转移酶的抑制。然而,当一条X染色体丢失时,雌性iPSC获得了类似于XY iPSC的DNA甲基化图谱。因此,是X染色体剂量决定了iPSC中的全基因组DNA甲基化水平。在这里,我们讨论将X染色体剂量与多能干细胞中DNA甲基化调控联系起来的证据。我们专注于iPSC重编程研究,其中X染色体状态是一个影响我们对表观遗传重塑理解的新因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0d32/6233964/b3efe2afeff7/10.1177_2516865718802931-fig1.jpg

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