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Distinct and overlapping roles of STAG1 and STAG2 in cohesin localization and gene expression in embryonic stem cells

机译:胚胎定位和胚胎干细胞中的基因表达中的特异性和重叠作用

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The three-dimensional organization of the genome in the nucleus plays an integral role in many biological processes, including gene expression. The genome is folded into DNA loops that bring together distal regulatory elements and genes. Cohesin, a ring-shaped protein complex, is a major player in the formation of DNA loops. Cohesin is composed of a core trimer and one of two variant STAG subunits, STAG1 or STAG2. It is not understood whether variant STAG proteins give rise to cohesin complexes with distinct functions. Recent studies have begun to characterize the roles of STAG1 and STAG2, with partially contradictory results. Here, we generate stable single-knockout embryonic stem cell lines to investigate the individual contributions of STAG1 and STAG2 in regulating cohesin chromosomal localization and function. We report both overlapping roles for STAG1 and STAG2 in cohesin localization and somewhat distinct roles in gene expression. STAG1 and STAG2 occupy the same sites across the genome, yet do not exist together in a higher order complex. Despite their shared localization, STAG1 and STAG2 have both distinct and redundant effects on gene expression. Loss of both STAG1 and STAG2 causes widespread transcriptome dysregulation, altered cohesin DNA occupancy, and reduced cell proliferation. Together, this work reveals the requirement of at least one STAG protein for proper cohesin function. STAG1 and STAG2 have independent roles in cohesin localization and both overlapping and distinct roles in gene expression. The roles of STAG1 and STAG2 in mouse embryonic stem cells may be somewhat different than in other cell types, due to their relative expression levels. These results advance our understanding of the link between mammalian genome organization and gene expression during development and disease contexts.
机译:在核中的基因组的三维组织在许多生物过程中起重要作用,包括基因表达。基因组被折叠成带来远端调节元件和基因的DNA环。 Cohesin,一种环形蛋白质复合物,是形成DNA环的主要参与者。 Cohesin由核心三聚体和两个变体雄鹿亚基,Stag1或Stag2中的一个组成。不明白变体雄蛋白是否产生具有不同功能的幼耳复合物。最近的研究已经开始表征Stag1和Stag2的作用,部分矛盾的结果。在这里,我们产生稳定的单敲胚胚细胞系,以研究Stag1和Stag2在调节休蛋白染色体定位和功能方面的个体贡献。我们在Cohyin定位中报告了Stag1和Stag2的重叠作用以及基因表达中有点明显的作用。 Stag1和Stag2占据了整个基因组的相同网站,但在更高阶的复杂中不存在于一起。尽管他们共享了本地化,但Stag1和Stag2对基因表达具有明显和冗余的影响。 STAG1和STAG2的丧失导致广泛的转录组呼吸困难,改变的休肽DNA占用,细胞增殖降低。在一起,这项工作揭示了至少一种雄鹿蛋白的要求进行适当的休蛋白功能。 Stag1和Stag2在Cohyin定位中具有独立的作用,以及基因表达中的重叠和不同的作用。由于它们的相对表达水平,STAG1和STAG2在小鼠胚胎干细胞中的角色可能略微不同于其他细胞类型。这些结果推进了我们对哺乳动物基因组组织和基因表达之间的联系的理解和疾病的背景。

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