Division of Hematology, The Children's Hospital of Philadelphia, Philadelphia, PA, USA.
Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA, USA.
Nat Genet. 2024 Sep;56(9):1938-1952. doi: 10.1038/s41588-024-01871-y. Epub 2024 Aug 29.
Few transcription factors have been examined for their direct roles in physically connecting enhancers and promoters. Here acute degradation of Yin Yang 1 (YY1) in erythroid cells revealed its requirement for the maintenance of numerous enhancer-promoter loops, but not compartments or domains. Despite its reported ability to interact with cohesin, the formation of YY1-dependent enhancer-promoter loops does not involve stalling of cohesin-mediated loop extrusion. Integrating mitosis-to-G1-phase dynamics, we observed partial retention of YY1 on mitotic chromatin, predominantly at gene promoters, followed by rapid rebinding during mitotic exit, coinciding with enhancer-promoter loop establishment. YY1 degradation during the mitosis-to-G1-phase interval revealed a set of enhancer-promoter loops that require YY1 for establishment during G1-phase entry but not for maintenance in interphase, suggesting that cell cycle stage influences YY1's architectural function. Thus, as revealed here for YY1, chromatin architectural functions of transcription factors can vary in their interplay with CTCF and cohesin as well as by cell cycle stage.
目前,人们对转录因子在连接增强子和启动子方面的直接作用的研究还很少。本文研究发现,在红细胞中,快速降解 Yin Yang 1(YY1)蛋白需要其维持大量增强子-启动子环,但不需要维持隔室或域。尽管 YY1 被报道可以与黏合蛋白相互作用,但 YY1 依赖的增强子-启动子环的形成并不涉及黏合蛋白介导的环挤出的停滞。整合有丝分裂到 G1 期的动态变化,我们观察到 YY1 在有丝分裂染色质上的部分保留,主要位于基因启动子上,随后在有丝分裂退出时迅速重新结合,与增强子-启动子环的建立同时发生。在有丝分裂到 G1 期的间隔期间,YY1 的降解揭示了一组增强子-启动子环,它们在 G1 期进入时需要 YY1 来建立,但在有丝分裂期间不需要维持,这表明细胞周期阶段影响 YY1 的结构功能。因此,正如本文中所揭示的,转录因子的染色质结构功能可以在与 CTCF 和黏合蛋白的相互作用以及细胞周期阶段方面发生变化。