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人类心脏发生过程中基因组重排的动力学揭示了一个依赖于 RBM20 的剪接工厂。

Dynamics of genome reorganization during human cardiogenesis reveal an RBM20-dependent splicing factory.

机构信息

Department of Pathology, University of Washington, 1959 NE Pacific Street, Seattle, WA, 98195, USA.

Center for Cardiovascular Biology, University of Washington, 850 Republican Street, Brotman Building, Seattle, WA, 98109, USA.

出版信息

Nat Commun. 2019 Apr 4;10(1):1538. doi: 10.1038/s41467-019-09483-5.

Abstract

Functional changes in spatial genome organization during human development are poorly understood. Here we report a comprehensive profile of nuclear dynamics during human cardiogenesis from pluripotent stem cells by integrating Hi-C, RNA-seq and ATAC-seq. While chromatin accessibility and gene expression show complex on/off dynamics, large-scale genome architecture changes are mostly unidirectional. Many large cardiac genes transition from a repressive to an active compartment during differentiation, coincident with upregulation. We identify a network of such gene loci that increase their association inter-chromosomally, and are targets of the muscle-specific splicing factor RBM20. Genome editing studies show that TTN pre-mRNA, the main RBM20-regulated transcript in the heart, nucleates RBM20 foci that drive spatial proximity between the TTN locus and other inter-chromosomal RBM20 targets such as CACNA1C and CAMK2D. This mechanism promotes RBM20-dependent alternative splicing of the resulting transcripts, indicating the existence of a cardiac-specific trans-interacting chromatin domain (TID) functioning as a splicing factory.

摘要

人类发育过程中空间基因组组织的功能变化知之甚少。在这里,我们通过整合 Hi-C、RNA-seq 和 ATAC-seq,报告了多能干细胞来源的人类心脏发生过程中核动态的综合概况。虽然染色质可及性和基因表达显示出复杂的开/关动力学,但大规模基因组结构变化主要是单向的。许多大型心脏基因在分化过程中从抑制状态转变为活跃状态,同时上调。我们确定了这样一个基因座网络,这些基因座增加了它们在染色体间的关联,并且是肌肉特异性剪接因子 RBM20 的靶标。基因组编辑研究表明,TTN 前体 mRNA 是心脏中主要受 RBM20 调控的转录本,它为 RBM20 焦点提供了核,从而驱动 TTN 基因座与其他染色体间 RBM20 靶标(如 CACNA1C 和 CAMK2D)之间的空间接近。这种机制促进了由此产生的转录本中 RBM20 依赖性的可变剪接,表明存在作为剪接工厂的心脏特异性跨相互作用染色质域 (TID)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec16/6449405/e8cbe1130898/41467_2019_9483_Fig1_HTML.jpg

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