TRPA1 Promotes Cardiac Myofibroblast Transdifferentiation after Myocardial Infarction Injury via the Calcineurin-NFAT-DYRK1A Signaling Pathway

钙调神经磷酸酶 NFAT公司 转分化 肌成纤维细胞 DYRK1A型 心肌梗塞 心脏纤维化 信号转导 细胞生物学 医学 癌症研究 心脏病学 化学 内科学 生物 纤维化 干细胞 激酶 心力衰竭 移植
作者
Shuang Li,Xiongshan Sun,Hao Wu,Peng Yu,Xin Wang,Zhenhua Jiang,Erhe Gao,Jiangwei Chen,De Li,Chenming Qiu,Baomei Song,Ken Chen,Kecheng He,Dachun Yang,Yongjian Yang
出处
期刊:Oxidative Medicine and Cellular Longevity [Hindawi Limited]
卷期号:2019: 1-17 被引量:33
标识
DOI:10.1155/2019/6408352
摘要

Cardiac fibroblasts (CFs) are a critical cell population responsible for myocardial extracellular matrix homeostasis. After stimulation by myocardial infarction (MI), CFs transdifferentiate into cardiac myofibroblasts (CMFs) and play a fundamental role in the fibrotic healing response. Transient receptor potential ankyrin 1 (TRPA1) channels are cationic ion channels with a high fractional Ca 2+ current, and they are known to influence cardiac function after MI injury; however, the molecular mechanisms regulating CMF transdifferentiation remain poorly understood. TRPA1 knockout mice, their wild-type littermates, and mice pretreated with the TRPA1 agonist cinnamaldehyde (CA) were subjected to MI injury and monitored for survival, cardiac function, and fibrotic remodeling. TRPA1 can drive myofibroblast transdifferentiation initiated 1 week after MI injury. In addition, we explored the underlying mechanisms via in vitro experiments through gene transfection alone or in combination with inhibitor treatment. TRPA1 overexpression fully activated CMF transformation, while CFs lacking TRPA1 were refractory to transforming growth factor β - (TGF- β -) induced transdifferentiation. TGF- β enhanced TRPA1 expression, which promoted the Ca 2+ -responsive activation of calcineurin (CaN). Moreover, dual-specificity tyrosine-regulated kinase-1a (DYRK1A) regulated CaN-mediated NFAT nuclear translocation and TRPA1-dependent transdifferentiation. These findings suggest a potential therapeutic role for TRPA1 in the regulation of CMF transdifferentiation in response to MI injury and indicate a comprehensive pathway driving CMF formation in conjunction with TGF- β , Ca 2+ influx, CaN, NFATc3, and DYRK1A.
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