Integrated analysis of Xist upregulation and gene silencing at the onset of random X-chromosome inactivation at high temporal and allelic resolution

Guido Pacini, I. Dunkel, N. Mages, Verena Mutzel, B. Timmermann, A. Marsico, Edda G. Schulz
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引用次数: 1

Abstract

To ensure dosage compensation between the sexes, one randomly chosen X chromosome is silenced in each female cell in the process of X-chromosome inactivation (XCI). XCI is initiated during early development through upregulation of the long non-coding RNA Xist, which mediates chromosome-wide gene silencing. Cell differentiation, Xist upregulation and silencing are thought to be coupled at multiple levels to ensure inactivation of exactly one out of two X chromosomes. Here we perform an integrated analysis of all three processes through allele-specific single-cell RNA-sequencing. Specifically, we assess the onset of random XCI with high temporal resolution in differentiating mouse embryonic stem cells, and develop dedicated analysis approaches. By exploiting the inter-cellular heterogeneity of XCI onset, we identify Nanog downregulation as its main trigger and discover additional putative Xist regulators. Moreover, we confirm several predictions of the stochastic model of XCI where monoallelic silencing is thought to be ensured through negative feedback regulation. Finally, we show that genetic variation modulates the XCI process at multiple levels, providing a potential explanation for the long-known Xce effect, which leads to preferential inactivation of a specific X chromosome in inter-strain crosses. We thus draw a detailed picture of the different levels of regulation that govern the initiation of XCI. The experimental and computational strategies we have developed here will allow us to profile random XCI in more physiological contexts, including primary human cells in vivo.
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在高时间和等位基因分辨率下随机x染色体失活开始时Xist上调和基因沉默的综合分析
在X染色体失活(XCI)过程中,在每个雌性细胞中随机选择一条X染色体沉默,以确保两性之间的剂量补偿。XCI在发育早期通过长链非编码RNA Xist的上调而启动,Xist介导全染色体基因沉默。细胞分化、Xist上调和沉默被认为是在多个水平上耦合的,以确保两条X染色体中的一条恰好失活。在这里,我们通过等位基因特异性单细胞rna测序对这三个过程进行了综合分析。具体来说,我们评估了小鼠胚胎干细胞分化过程中随机XCI的高时间分辨率,并开发了专门的分析方法。通过利用XCI发病的细胞间异质性,我们确定Nanog下调是其主要触发因素,并发现了其他假定的Xist调节因子。此外,我们证实了XCI随机模型的几个预测,其中单等位基因沉默被认为是通过负反馈调节来确保的。最后,我们发现遗传变异在多个水平上调节XCI过程,为长期已知的Xce效应提供了潜在的解释,该效应导致菌株间杂交中特定X染色体的优先失活。因此,我们绘制了管理XCI启动的不同级别监管的详细图片。我们在这里开发的实验和计算策略将使我们能够在更多的生理背景下(包括体内的原代人类细胞)分析随机XCI。
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