Cardiovascular Metabolic Disease Translational Research Programme, Yong Loo Lin School of Medicine, National University of Singapore, Singapore; Cardiovascular Research Institute, National University Healthcare Systems, Singapore; NUS Graduate School, National University of Singapore, Singapore.
Cardiovascular Metabolic Disease Translational Research Programme, Yong Loo Lin School of Medicine, National University of Singapore, Singapore; Cardiovascular Research Institute, National University Healthcare Systems, Singapore.
J Mol Cell Cardiol. 2024 Dec;197:90-102. doi: 10.1016/j.yjmcc.2024.10.009. Epub 2024 Oct 28.
Cardiac-expressed long noncoding RNAs (lncRNAs) are important for cardiomyocyte (CM) differentiation and function. Several lncRNAs have been identified and characterized for early CM lineage commitment, however those in later CM lineage specification and maturation remain less well studied. Moreover, unique atrial / ventricular lncRNA expression has never been studied in detail.
Here, we characterized a novel ventricular myocyte-restricted lncRNA, not expressed in atrial myocytes, and conserved only in primates.
First, we performed single cell RNA-seq on human pluripotent stem cell derived cardiomyocytes (hPSC-CM) at the late stages of 2, 6 and 12 weeks of differentiation. Weighted correlation network analysis identified core gene modules, including a set of lncRNAs highly abundant and predominantly expressed in the human heart. A lncRNA (we call VENTHEART, VHRT) co-expressed with cardiac maturation and ventricular-specific genes MYL2 and MYH7, and was expressed in fetal and adult human ventricles, but not atria. CRISPR-mediated deletion of the VHRT gene led to impaired CM sarcomere formation and significant disruption of the ventricular CM gene program. Indeed, a similar disruption was not observed in VHRT KO hPSC-derived atrial CM, suggesting that VHRT exhibits only ventricular myocyte subtype-specific effects. Optical recordings validated that loss of VHRT significantly prolonged action potential duration at 90 % repolarization (APD) for ventricular-like, but not atrial-like, CMs.
This reports the first lncRNA that is exclusively required for proper ventricular, and not atrial, CM specification and function.
心脏表达的长链非编码 RNA(lncRNA)对于心肌细胞(CM)分化和功能很重要。已经鉴定和表征了几种 lncRNA 用于早期 CM 谱系决定,但对于后期 CM 谱系特化和成熟的研究较少。此外,心房/心室 lncRNA 的表达从未被详细研究过。
本研究描述了一种新型心室肌细胞特异性 lncRNA,在心房肌细胞中不表达,仅在灵长类动物中保守。
首先,我们对人类多能干细胞来源的心肌细胞(hPSC-CM)在分化的第 2、6 和 12 周晚期进行了单细胞 RNA-seq。加权相关网络分析确定了核心基因模块,包括一组在人类心脏中高度丰富且主要表达的 lncRNA。一个与心脏成熟和心室特异性基因 MYL2 和 MYH7 共表达的 lncRNA(我们称为 VENTHEART,VHRT),在胎儿和成年人心室中表达,但不在心房中表达。CRISPR 介导的 VHRT 基因缺失导致 CM 肌节形成受损和心室 CM 基因程序的显著破坏。事实上,在 VHRT KO hPSC 衍生的心房 CM 中没有观察到类似的破坏,这表明 VHRT 仅表现出心室肌细胞亚型特异性效应。光学记录验证了 VHRT 的缺失显著延长了心室样但不是心房样 CM 的复极化 90%时程(APD)。
本研究报告了第一个专门用于正确的心室,而不是心房,CM 特化和功能的 lncRNA。