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Tsix 调控与多能性的分子偶联。

Molecular coupling of Tsix regulation and pluripotency.

机构信息

Unité de Génétique Moléculaire Murine, URA 2578, Institut Pasteur, 75724 Paris Cedex 15, France.

出版信息

Nature. 2010 Nov 18;468(7322):457-60. doi: 10.1038/nature09496.

DOI:10.1038/nature09496
PMID:21085182
Abstract

The reprogramming of X-chromosome inactivation during the acquisition of pluripotency in vivo and in vitro is accompanied by the repression of Xist, the trigger of X-inactivation, and the upregulation of its antisense counterpart Tsix. We have shown that key factors supporting pluripotency-Nanog, Oct4 and Sox2-bind within Xist intron 1 in undifferentiated embryonic stem cells (ESC) to repress Xist transcription. However, the relationship between transcription factors of the pluripotency network and Tsix regulation has remained unclear. Here we show that Tsix upregulation in embryonic stem cells depends on the recruitment of the pluripotent marker Rex1, and of the reprogramming-associated factors Klf4 and c-Myc, by the DXPas34 minisatellite associated with the Tsix promoter. Upon deletion of DXPas34, binding of the three factors is abrogated and the transcriptional machinery is no longer efficiently recruited to the Tsix promoter. Additional analyses including knockdown experiments further demonstrate that Rex1 is critically important for efficient transcription elongation of Tsix. Hence, distinct embryonic-stem-cell-specific complexes couple X-inactivation reprogramming and pluripotency, with Nanog, Oct4 and Sox2 repressing Xist to facilitate the reactivation of the inactive X, and Klf4, c-Myc and Rex1 activating Tsix to remodel Xist chromatin and ensure random X-inactivation upon differentiation. The holistic pattern of Xist/Tsix regulation by pluripotent factors that we have identified suggests a general direct governance of complex epigenetic processes by the machinery dedicated to pluripotency.

摘要

在体内和体外获得多能性的过程中,X 染色体失活的重编程伴随着 Xist 的抑制,Xist 是 X 染色体失活的触发因子,以及其反义对应物 Tsix 的上调。我们已经表明,支持多能性的关键因素——Nanog、Oct4 和 Sox2——在未分化的胚胎干细胞(ESC)中结合在 Xist 内含子 1 内,以抑制 Xist 的转录。然而,多能性网络的转录因子与 Tsix 调节之间的关系仍然不清楚。在这里,我们表明胚胎干细胞中 Tsix 的上调依赖于多潜能标志物 Rex1 的募集,以及与 Tsix 启动子相关的 DXPas34 微卫星相关的重编程相关因子 Klf4 和 c-Myc 的募集。在 DXPas34 缺失后,三个因子的结合被废除,转录机制不再有效地募集到 Tsix 启动子上。进一步的分析,包括敲低实验,进一步表明 Rex1 对于 Tsix 的有效转录延伸至关重要。因此,不同的胚胎干细胞特异性复合物将 X 染色体失活重编程和多能性联系起来,Nanog、Oct4 和 Sox2 抑制 Xist 以促进失活 X 的重新激活,而 Klf4、c-Myc 和 Rex1 激活 Tsix 以重塑 Xist 染色质,并确保分化时随机 X 染色体失活。我们确定的多能因子对 Xist/Tsix 调节的整体模式表明,专门用于多能性的机制对复杂的表观遗传过程具有直接的直接控制。

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Molecular coupling of Tsix regulation and pluripotency.Tsix 调控与多能性的分子偶联。
Nature. 2010 Nov 18;468(7322):457-60. doi: 10.1038/nature09496.
2
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Jpx RNA controls Xist induction through spatial reorganization of the mouse X-inactivation center.Jpx RNA通过小鼠X染色体失活中心的空间重组来控制Xist的诱导。
Dev Cell. 2025 Jul 11. doi: 10.1016/j.devcel.2025.06.028.
2
X chromosome inactivation in mammals: general principles and species-specific considerations.哺乳动物中的X染色体失活:一般原则及物种特异性考量
EMBO Rep. 2025 Jun 19. doi: 10.1038/s44319-025-00499-1.
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Insulation between adjacent TADs is controlled by the width of their boundaries through distinct mechanisms.

本文引用的文献

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An embryonic story: analysis of the gene regulative network controlling Xist expression in mouse embryonic stem cells.一个胚胎学故事:分析控制小鼠胚胎干细胞中 Xist 表达的基因调控网络。
Bioessays. 2010 Jul;32(7):581-8. doi: 10.1002/bies.201000019.
2
c-Myc regulates transcriptional pause release.c-Myc 调控转录暂停释放。
Cell. 2010 Apr 30;141(3):432-45. doi: 10.1016/j.cell.2010.03.030.
3
Aberrant silencing of imprinted genes on chromosome 12qF1 in mouse induced pluripotent stem cells.在小鼠诱导多能干细胞中,12qF1 染色体上的印迹基因异常沉默。
相邻拓扑关联结构域(TAD)之间的绝缘是通过其边界宽度,经由不同机制来控制的。
Proc Natl Acad Sci U S A. 2025 Mar 18;122(11):e2413112122. doi: 10.1073/pnas.2413112122. Epub 2025 Mar 10.
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Defective X-chromosome inactivation and cancer risk in women.女性X染色体失活缺陷与癌症风险
Commun Biol. 2025 Feb 22;8(1):289. doi: 10.1038/s42003-025-07691-y.
5
KDM6A facilitates Xist upregulation at the onset of X inactivation.KDM6A在X染色体失活开始时促进Xist上调。
Biol Sex Differ. 2025 Jan 3;16(1):1. doi: 10.1186/s13293-024-00683-3.
6
The interferon γ pathway enhances pluripotency and X-chromosome reactivation in iPSC reprogramming.干扰素 γ 通路增强 iPSC 重编程中的多能性和 X 染色体激活。
Sci Adv. 2024 Aug 9;10(32):eadj8862. doi: 10.1126/sciadv.adj8862. Epub 2024 Aug 7.
7
Orchestrating Asymmetric Expression: Mechanisms behind Regulation.协调不对称表达:调控背后的机制
Epigenomes. 2024 Feb 1;8(1):6. doi: 10.3390/epigenomes8010006.
8
GATA transcription factors drive initial Xist upregulation after fertilization through direct activation of long-range enhancers.GATA 转录因子通过直接激活长距离增强子,在受精后驱动初始 Xist 的上调。
Nat Cell Biol. 2023 Nov;25(11):1704-1715. doi: 10.1038/s41556-023-01266-x. Epub 2023 Nov 6.
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CasTuner is a degron and CRISPR/Cas-based toolkit for analog tuning of endogenous gene expression.CasTuner 是一种基于降解结构域和 CRISPR/Cas 的工具包,用于对内源性基因表达进行模拟调控。
Nat Commun. 2023 Jun 3;14(1):3225. doi: 10.1038/s41467-023-38909-4.
10
The compleX balancing act of controlling X-chromosome dosage and how it impacts mammalian germline development.调控 X 染色体剂量及其对哺乳动物生殖细胞发育影响的复杂平衡作用。
Biochem J. 2023 Apr 26;480(8):521-537. doi: 10.1042/BCJ20220450.
Nature. 2010 May 13;465(7295):175-81. doi: 10.1038/nature09017. Epub 2010 Apr 25.
4
RNF12 is an X-Encoded dose-dependent activator of X chromosome inactivation.RNF12是一种X染色体失活的X编码剂量依赖性激活因子。
Cell. 2009 Nov 25;139(5):999-1011. doi: 10.1016/j.cell.2009.10.034.
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Epigenetics Chromatin. 2009 Jul 20;2(1):8. doi: 10.1186/1756-8935-2-8.
6
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Development. 2009 Jul;136(14):2311-22. doi: 10.1242/dev.024398.
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