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动态染色质景观编码心肌细胞围产期转变的程序。

Dynamic chromatin landscape encodes programs for perinatal transition of cardiomyocytes.

作者信息

Zhang Jing, Ouyang Zhaohui, Xia Limei, Wang Qi, Zheng Feng, Xu Kun, Xing Yuexian, Wei Ke, Shi Shaolin, Li Chaojun, Yang Jingping

机构信息

State Key Laboratory of Pharmaceutical Biotechnology, Medical School, Nanjing University, 210093, Nanjing, Jiangsu, China.

Jiangsu Key Laboratory of Molecular Medicine, Medical School, Nanjing University, 210093, Nanjing, Jiangsu, China.

出版信息

Cell Death Discov. 2023 Jan 18;9(1):11. doi: 10.1038/s41420-023-01322-3.

Abstract

The perinatal period occurring immediately before and after birth is critical for cardiomyocytes because they must change rapidly to accommodate the switch from fetal to neonatal circulation after birth. This transition is a well-orchestrated process, and any perturbation leads to unhealthy cardiomyocytes and heart disease. Despite its importance, little is known about how this transition is regulated and controlled. Here, by mapping the genome-wide chromatin accessibility, transcription-centered long-range chromatin interactions and gene expression in cardiomyocytes undergoing perinatal transition, we discovered two key transcription factors, MEF2 and AP1, that are crucial for driving the phenotypic changes within the perinatal window. Thousands of dynamic regulatory elements were found in perinatal cardiomyocytes and we show these elements mediated the transcriptional reprogramming through an elegant chromatin high-order architecture. We recompiled transcriptional program of induced stem cell-derived cardiomyocytes according to our discovered network, and they showed adult cardiomyocyte-like electrophysiological expression. Our work provides a comprehensive regulatory resource of cardiomyocytes perinatal reprogramming, and aids the gap-filling of cardiac translational research.

摘要

出生前后紧接着的围产期对心肌细胞至关重要,因为它们必须迅速发生变化,以适应出生后从胎儿循环到新生儿循环的转变。这种转变是一个精心编排的过程,任何干扰都会导致心肌细胞不健康和心脏病。尽管其很重要,但对于这种转变是如何被调控的却知之甚少。在这里,通过绘制围产期转变的心肌细胞中的全基因组染色质可及性、以转录为中心的长程染色质相互作用和基因表达图谱,我们发现了两个关键转录因子,即MEF2和AP1,它们对于在围产期窗口内驱动表型变化至关重要。在围产期心肌细胞中发现了数千个动态调控元件,我们表明这些元件通过一种精妙的染色质高阶结构介导了转录重编程。根据我们发现的网络,我们重新编制了诱导多能干细胞衍生的心肌细胞的转录程序,它们表现出成人心肌细胞样的电生理表达。我们的工作提供了心肌细胞围产期重编程的全面调控资源,并有助于填补心脏转化研究的空白。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8728/9849264/74a4e4a022e9/41420_2023_1322_Fig1_HTML.jpg

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