西斯特
剂量补偿
生物
染色质
X-失活
长非编码RNA
遗传学
基因沉默
核糖核酸
计算生物学
X染色体
染色体构象捕获
组蛋白修饰酶
基因
基因表达
细胞生物学
染色质重塑
增强子
作者
Iris Dror,Tiao Tan,Kathrin Plath
标识
DOI:10.1016/j.gde.2024.102235
摘要
To regulate gene expression, the macromolecular components of the mammalian interphase nucleus are spatially organized into a myriad of functional compartments. Over the past decade, increasingly sophisticated genomics, microscopy, and functional approaches have probed this organization in unprecedented detail. These investigations have linked chromatin-associated noncoding RNAs to specific nuclear compartments and uncovered mechanisms by which these RNAs establish such domains. In this review, we focus on the long non-coding RNA Xist and summarize new evidence demonstrating the significance of chromatin reconfiguration in creating the inactive X-chromosome compartment. Differences in chromatin compaction correlate with distinct levels of gene repression on the X-chromosome, potentially explaining how human XIST can induce chromosome-wide dampening and silencing of gene expression at different stages of human development.
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