Kim Minji, Wang Ping, Clow Patricia A, Chien I Eli, Wang Xiaotao, Peng Jianhao, Chai Haoxi, Liu Xiyuan, Lee Byoungkoo, Ngan Chew Yee, Yue Feng, Milenkovic Olgica, Chuang Jeffrey H, Wei Chia-Lin, Casellas Rafael, Cheng Albert W, Ruan Yijun
The Jackson Laboratory for Genomic Medicine, Farmington, CT, 06032, USA.
Present address: Department of Computational Medicine and Bioinformatics, University of Michigan, Ann Arbor, MI, 48109, USA.
bioRxiv. 2024 Mar 27:2024.03.25.586715. doi: 10.1101/2024.03.25.586715.
Cohesin is required for chromatin loop formation. However, its precise role in regulating gene transcription remains largely unknown. We investigated the relationship between cohesin and RNA Polymerase II (RNAPII) using single-molecule mapping and live-cell imaging methods in human cells. Cohesin-mediated transcriptional loops were highly correlated with those of RNAPII and followed the direction of gene transcription. Depleting RAD21, a subunit of cohesin, resulted in the loss of long-range (>100 kb) loops between distal (super-)enhancers and promoters of cell-type-specific genes. By contrast, the short-range (<50 kb) loops were insensitive to RAD21 depletion and connected genes that are mostly housekeeping. This result explains why only a small fraction of genes are affected by the loss of long-range chromatin interactions due to cohesin depletion. Remarkably, RAD21 depletion appeared to up-regulate genes located in early initiation zones (EIZ) of DNA replication, and the EIZ signals were amplified drastically without RAD21. Our results revealed new mechanistic insights of cohesin's multifaceted roles in establishing transcriptional loops, preserving long-range chromatin interactions for cell-specific genes, and maintaining timely order of DNA replication.
黏连蛋白是染色质环形成所必需的。然而,其在调节基因转录中的精确作用仍 largely 未知。我们在人类细胞中使用单分子图谱和活细胞成像方法研究了黏连蛋白与 RNA 聚合酶 II(RNAPII)之间的关系。黏连蛋白介导的转录环与 RNAPII 的转录环高度相关,并遵循基因转录方向。敲除黏连蛋白的一个亚基 RAD21,导致细胞类型特异性基因的远端(超级)增强子与启动子之间的长程(>100 kb)环丢失。相比之下,短程(<50 kb)环对 RAD21 敲除不敏感,连接的大多是管家基因。这一结果解释了为什么由于黏连蛋白缺失导致长程染色质相互作用丧失时,只有一小部分基因受到影响。值得注意的是,RAD21 敲除似乎上调了位于 DNA 复制早期起始区(EIZ)的基因,并且在没有 RAD21 的情况下 EIZ 信号急剧放大。我们的结果揭示了黏连蛋白在建立转录环、维持细胞特异性基因的长程染色质相互作用以及维持 DNA 复制的适时顺序方面多方面作用的新机制见解。