挤压喷泉是合子基因组激活后出现的染色体组织的标志。

Aleksandra Galitsyna, Sergey Ulianov, Mariia Bazarevich, Nikolai Bykov, Marina Veil, Meijiang Gao, Kristina Y Perevoshchikova, Mikhail S Gelfand, Sergey V Razin, Leonid A Mirny, Daria Onichtchouk
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引用次数: 0

摘要

发育过程中基因表达的第一次激活(合子基因组激活,ZGA)伴随着染色体组织的巨大变化。这两个过程之间的联系仍然未知。对斑马鱼胚胎使用Hi-C,我们发现染色体折叠始于建立“喷泉”,这是染色体组织的新元素,在ZGA的增强子处选择性出现。使用聚合物模拟,我们证明喷泉可以作为目标粘着力加载的位置出现,并且需要双面但不同步的环形挤出。驱动ZGA的先驱转录因子缺失后喷泉的具体缺失揭示了增强子活性和喷泉形成之间的因果关系。最后,我们展示了喷泉出现在早期的Medaka和Xenopus胚胎中;此外,我们在小鼠胚胎干细胞的增强子上发现了粘附素依赖性喷泉模式。总之,喷泉是染色体组织的第一个增强子特异性元件;它们构成了早期发育过程中染色体折叠的起点,很可能是粘附素靶向加载的位点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Extrusion fountains are hallmarks of chromosome organization emerging upon zygotic genome activation.

Extrusion fountains are hallmarks of chromosome organization emerging upon zygotic genome activation.

Extrusion fountains are hallmarks of chromosome organization emerging upon zygotic genome activation.

Extrusion fountains are hallmarks of chromosome organization emerging upon zygotic genome activation.

The initiation of gene expression during development, known as zygotic genome activation (ZGA), is accompanied by massive changes in chromosome organization. However, the earliest events of chromosome folding and their functional roles remain unclear. Using Hi-C on zebrafish embryos, we discovered that chromosome folding begins early in development with the formation of "fountains", a novel element of chromosome organization. Emerging preferentially at enhancers, fountains exhibit an initial accumulation of cohesin, which later redistributes to CTCF sites at TAD borders. Knockouts of pioneer transcription factors driving ZGA enhancers result in the specific loss of fountains, establishing a causal link between enhancer activation and fountain formation. Polymer simulations demonstrate that fountains may arise as sites of facilitated cohesin loading, requiring two-sided but desynchronized loop extrusion, potentially caused by cohesin collisions with obstacles or internal switching. Moreover, we detected similar fountain patterns at enhancers in mouse cells. Fountains disappear upon acute cohesin depletion, as well as during mitosis, and reappear with cohesin loading in early G1. Altogether, fountains represent the first known enhancer-specific elements of chromosome organization and constitute starting points for chromosome folding during development, likely through facilitated cohesin loading.

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