机械敏感通道
斑马鱼
Notch信号通路
再生(生物学)
TRPV4型
心室
Wnt信号通路
一氧化氮
细胞生物学
血流动力学
信号转导
生物
解剖
内科学
医学
内分泌学
离子通道
生物化学
受体
基因
作者
Chenggang Yu,Xueyu Li,Jinmin Ma,Shuzhang Liang,Yan Zhao,Qi Li,Ruilin Zhang
标识
DOI:10.1007/s00018-023-05092-0
摘要
Abstract Zebrafish have a remarkable ability to regenerate injured hearts. Altered hemodynamic forces after larval ventricle ablation activate the endocardial Klf2a - Notch signaling cascade to direct zebrafish cardiac regeneration. However, how the heart perceives blood flow changes and initiates signaling pathways promoting regeneration is not fully understood. The present study demonstrated that the mechanosensitive channel Trpv4 sensed the altered hemodynamic forces in injured hearts and its expression was regulated by blood flow. In addition to mediating the endocardial Klf2a-Notch signal cascade around the atrioventricular canal (AVC), we discovered that Trpv4 regulated nitric oxide (NO) signaling in the bulbus arteriosus (BA). Further experiments indicated that Notch signaling primarily acted at the early stage of regeneration, and the major role of NO signaling was at the late stage and through TGF-β pathway. Overall, our findings revealed that mechanosensitive channels perceived the changes in hemodynamics after ventricle injury, and provide novel insights into the temporal and spatial coordination of multiple signaling pathways regulating heart regeneration.
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