RNA剪接
拼接因子
核糖核蛋白
选择性拼接
基因敲除
心力衰竭
细胞生物学
心肌病
生物
心肌细胞
原肌球蛋白
内科学
信使核糖核酸
医学
遗传学
肌球蛋白
基因
核糖核酸
作者
Isabelle Draper,Wan‐Ting Huang,Suchita Pande,Aaron Zou,Timothy D. Calamaras,Richard H. Choe,Ana Correia‐Branco,Ariel Mei,Howard H. Chen,Hannah R. Littel,Mekala Gunasekaran,Natalya M. Wells,Christine C. Bruels,Audrey L. Daugherty,Matthew J. Wolf,Peter B. Kang,Vicky K. Yang,Donna K. Slonim,Mary C. Wallingford,Robert M. Blanton
标识
DOI:10.1002/1873-3468.15020
摘要
Heart failure (HF) is highly prevalent. Mechanisms underlying HF remain incompletely understood. Splicing factors (SF), which control pre‐mRNA alternative splicing, regulate cardiac structure and function. This study investigated regulation of the splicing factor heterogeneous nuclear ribonucleoprotein‐L (hnRNPL) in the failing heart. hnRNPL protein increased in left ventricular tissue from mice with transaortic constriction‐induced HF and from HF patients. In left ventricular tissue, hnRNPL was detected predominantly in nuclei. Knockdown of the hnRNPL homolog Smooth in Drosophila induced cardiomyopathy. Computational analysis of predicted mouse and human hnRNPL binding sites suggested hnRNPL‐mediated alternative splicing of tropomyosin, which was confirmed in C2C12 myoblasts. These findings identify hnRNPL as a sensor of cardiac dysfunction and suggest that disturbances of hnRNPL affect alternative splicing in HF.
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