Galitsyna Aleksandra, Ulianov Sergey V, Bykov Nikolai S, Veil Marina, Gao Meijiang, Perevoschikova Kristina, Gelfand Mikhail, Razin Sergey V, Mirny Leonid, Onichtchouk Daria
Institute for Medical Engineering and Science, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.
Institute of Gene Biology, Russian Academy of Sciences, 119334, Russia.
bioRxiv. 2023 Jul 15:2023.07.15.549120. doi: 10.1101/2023.07.15.549120.
The first activation of gene expression during development (zygotic genome activation, ZGA) is accompanied by massive changes in chromosome organization. The connection between these two processes remains unknown. Using Hi-C for zebrafish embryos, we found that chromosome folding starts by establishing "fountains", novel elements of chromosome organization, emerging selectively at enhancers upon ZGA. Using polymer simulations, we demonstrate that fountains can emerge as sites of targeted cohesin loading and require two-sided, yet desynchronized, loop extrusion. Specific loss of fountains upon loss of pioneer transcription factors that drive ZGA reveals a causal connection between enhancer activity and fountain formation. Finally, we show that fountains emerge in early Medaka and embryos; moreover, we found cohesin-dependent fountain pattern on enhancers of mouse embryonic stem cells. Taken together, fountains are the first enhancer-specific elements of chromosome organization; they constitute starting points of chromosome folding during early development, likely serving as sites of targeted cohesin loading.
发育过程中基因表达的首次激活(合子基因组激活,ZGA)伴随着染色体组织的大量变化。这两个过程之间的联系仍然未知。通过对斑马鱼胚胎使用Hi-C技术,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时于增强子处选择性出现。通过聚合物模拟,我们证明“喷泉”可作为靶向黏连蛋白加载位点出现,并且需要双向但不同步的环挤压。驱动ZGA的先驱转录因子缺失时“喷泉”的特异性丧失揭示了增强子活性与“喷泉”形成之间的因果关系。最后,我们表明“喷泉”在早期青鳉和胚胎中出现;此外,我们在小鼠胚胎干细胞的增强子上发现了黏连蛋白依赖性的“喷泉”模式。综上所述,“喷泉”是染色体组织中首个增强子特异性元素;它们构成了早期发育过程中染色体折叠的起点,可能作为靶向黏连蛋白加载的位点。