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PRSS23 is essential for the Snail-dependent endothelial-to-mesenchymal transition during valvulogenesis in zebrafish

机译:PRSS23对于斑马鱼瓣膜形成过程中依赖于蜗牛的内皮细胞向间质转化至关重要

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AimsCardiac valve disease is a common cause of congenital heart failure. Cardiac valve development requires a complex regulation of assorted protease activities. Nevertheless, the regulation of these proteases during atrioventricular (AV) valve formation is poorly understood. Previously, PRSS23, a novel vascular protease, is shown to be highly expressed at the AV canal during murine heart development; however, its function remains unknown. In this study, we sought to characterize the functional role of PRSS23 during cardiac valve formation.Methods and resultsWe used a transgenic zebrafish line with fluorescently labelled vasculature as a tool to study the function of PRSS23. We first cloned the zebrafish prss23 and confirmed its sequence conservation with other vertebrate orthologues. Expression of prss23 was detected in the ventricle, atrium, and AV canal during zebrafish embryonic development. We found that morpholino knockdown of Prss23 inhibited the endothelial-to-mesenchymal transition (EndoMT) at the AV canal. Moreover, in human aortic endothelial cell-based assays, PRSS23 knockdown by short-hairpin RNA not only repressed the transforming growth factor-β-induced EndoMT, but also reduced Snail transcription, suggesting that Snail signalling is downstream of PRSS23 during EndoMT. We further demonstrated that human PRSS23 and SNAIL could rescue the prss23 morpholino-induced AV canal defect in zebrafish embryos, indicating that the function of PRSS23 in valvulogenesis is evolutionarily conserved. ConclusionWe demonstrated for the first time that the initiation of EndoMT in valvulogenesis depends on PRSS23-Snail signalling and that the functional role of PRSS23 during AV valve formation is evolutionarily conserved.
机译:心脏瓣膜疾病是先天性心力衰竭的常见原因。心脏瓣膜的发育需要对各种蛋白酶活性的复杂调节。然而,人们对房室(AV)瓣膜形成过程中这些蛋白酶的调节了解甚少。以前,一种新型的血管蛋白酶PRSS23在鼠心发育过程中在AV管中高表达。但是,其功能仍然未知。在这项研究中,我们试图表征PRSS23在心脏瓣膜形成过程中的功能。方法和结果我们使用带有荧光标记的脉管系统的转基因斑马鱼品系作为研究PRSS23功能的工具。我们首先克隆了斑马鱼prss23,并确认了其与其他脊椎动物直向同源物的序列保守性。在斑马鱼胚胎发育过程中,在心室,心房和AV管中检测到prss23的表达。我们发现Prss23的吗啉代基因敲低抑制了AV管的内皮向间充质转化(EndoMT)。此外,在基于人主动脉内皮细胞的测定中,短发夹RNA敲低PRSS23不仅抑制了转化生长因子-β诱导的EndoMT,而且减少了Snail转录,表明Snail信号在EndoMT期间位于PRSS23的下游。我们进一步证明了人类PRSS23和SNAIL可以挽救prss23吗啉代诱导的斑马鱼胚胎中的AV管缺损,表明PRSS23在瓣膜形成中的功能在进化上是保守的。结论我们首次证明EndoMT在瓣膜形成中的启动取决于PRSS23-Snail信号传导,并且PRSS23在AV瓣膜形成过程中的功能作用在进化上是保守的。

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