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Haemodynamically dependent valvulogenesis of zebrafish heart is mediated by flow-dependent expression of miR-21

机译:血流动力学依赖的斑马鱼心脏的valvulogenesis是由miR-21的流量依赖性表达介导的

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摘要

Heartbeat is required for normal development of the heart, and perturbation of intracardiac flow leads to morphological defects resembling congenital heart diseases. These observations implicate intracardiac haemodynamics in cardiogenesis, but the signalling cascades connecting physical forces, gene expression and morphogenesis are largely unknown. Here we use a zebrafish model to show that the microRNA, miR-21, is crucial for regulation of heart valve formation. Expression of miR-21 is rapidly switched on and off by blood flow. Vasoconstriction and increasing shear stress induce ectopic expression of miR-21 in the head vasculature and heart. Flow-dependent expression of mir-21 governs valvulogenesis by regulating the expression of the same targets as mouse/human miR-21 (sprouty, pdcd4, ptenb) and induces cell proliferation in the valve-forming endocardium at constrictions in the heart tube where shear stress is highest. We conclude that miR-21 is a central component of a flow-controlled mechanotransduction system in a physicogenetic regulatory loop.
机译:心脏的正常发育需要心跳,而心内血流的扰动会导致类似于先天性心脏病的形态缺陷。这些观察结果暗示了心脏内血流动力学在心脏发生中的作用,但是连接物理力,基因表达和形态发生的信号级联在很大程度上尚不清楚。在这里,我们使用斑马鱼模型来显示miR-21 microRNA对于调节心脏瓣膜形成至关重要。 miR-21的表达可通过血流快速打开和关闭。血管收缩和增加的切应力会诱导miR-21在头部血管和心脏中异位表达。 mir-21的流量依赖性表达通过调节与小鼠/人类miR-21相同的靶标(调控蛋白,pdcd4,ptenb)的表达来控制血管生成,并在心管收缩处的瓣膜形成心内膜诱导细胞增殖。压力最高。我们得出的结论是,miR-21是物理遗传调控环中流量控制的机械转导系统的核心组成部分。

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