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Exploring Mammalian Genome within Phase-Separated Nuclear Bodies: Experimental Methods and Implications for Gene Expression

机译:探索相分离核体内的哺乳动物基因组:实验方法和基因表达的含义。

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摘要

The importance of genome organization at the supranucleosomal scale in the control of gene expression is increasingly recognized today. In mammals, Topologically Associating Domains (TADs) and the active/inactive chromosomal compartments are two of the main nuclear structures that contribute to this organization level. However, recent works reviewed here indicate that, at specific loci, chromatin interactions with nuclear bodies could also be crucial to regulate genome functions, in particular transcription. They moreover suggest that these nuclear bodies are membrane-less organelles dynamically self-assembled and disassembled through mechanisms of phase separation. We have recently developed a novel genome-wide experimental method, High-salt Recovered Sequences sequencing (HRS-seq), which allows the identification of chromatin regions associated with large ribonucleoprotein (RNP) complexes and nuclear bodies. We argue that the physical nature of such RNP complexes and nuclear bodies appears to be central in their ability to promote efficient interactions between distant genomic regions. The development of novel experimental approaches, including our HRS-seq method, is opening new avenues to understand how self-assembly of phase-separated nuclear bodies possibly contributes to mammalian genome organization and gene expression.
机译:如今,人们越来越认识到,在核小体规模上基因组组织在控制基因表达中的重要性。在哺乳动物中,拓扑关联域(TAD)和有效/无效染色体区室是促成该组织水平的两个主要核结构。但是,这里回顾的最新工作表明,在特定位点,染色质与核小体的相互作用对于调节基因组功能(尤其是转录)也可能至关重要。他们还指出,这些核体是无膜细胞器,它们是通过相分离机制动态地自我组装和分解的。我们最近开发了一种新型的全基因组实验方法,即高盐回收序列测序(HRS-seq),该方法可鉴定与大核糖核蛋白(RNP)复合物和核小体相关的染色质区域。我们认为,此类RNP复合体和核体的物理性质似乎在促进远距离基因组区域之间有效相互作用的能力中至关重要。新型的实验方法(包括我们的HRS-seq方法)的发展为了解相分离核体的自组装可能如何促进哺乳动物基因组的组织和基因表达开辟了新的途径。

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