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Xist drives spatial compartmentalization of DNA and protein to orchestrate initiation and maintenance of X inactivation

机译:XIST驱动DNA和蛋白的空间划分,以协调X失活的启动和维持

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摘要

X chromosome inactivation (XCI) is the process whereby one of the X chromosomes in female mammalian cells is silenced to equalize X-linked gene expression with males. XCI depends on the long noncoding RNA Xist, which coats the inactive X chromosome in cis and triggers a cascade of events that ultimately lead to chromosome-wide transcriptional silencing that is stable for the lifetime of an organism. In recent years, the discovery of proteins that interact with Xist have led to new insights into how the initiation of XCI occurs. Nevertheless, there are still various unknowns about the mechanisms by which Xist orchestrates and maintains stable X-linked silencing. Here, we review recent work elucidating the role of Xist and its protein partners in mediating chromosome-wide transcriptional repression, as well as discuss a model by which Xist may compartmentalize proteins across the inactive X chromosome to enable both the initiation and maintenance of XCI.
机译:X染色体灭活(XCI)是该过程,其中雌性哺乳动物细胞中的一种X染色体沉默以使X链接基因表达与雄性均等。 XCI依赖于长度非编码RNA XIST,它在CIS中涂覆无活性X染色体,并触发了最终导致染色体的染色体转录沉默的级联,这对于生物体的寿命稳定。 近年来,与XISS交互的蛋白质发现已经导致新的见解如何发生XCI的启动。 然而,关于XIST协调并维持稳定的X-Linked Sulening的机制,还有各种未知。 在这里,我们审查了最近的工作,阐明了XIST及其蛋白质合作伙伴在介导染色体转录抑制中的作用,以及讨论XIST可以将蛋白质划分的蛋白质在无活性X染色体上进行培养,以实现XCI的启动和维护。

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