Endothelial basement membrane laminins - new players in mouse and human myoendothelial junctions and shear stress communication

IF 4.5 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Anna-Liisa Luik , Melanie-Jane Hannocks , Sophie Loismann , Kishan Kapupara , Manuela Cerina , Miesje van der Stoel , Yaroslav Tsytsyura , Nataliya Glyvuk , Caroline Nordenvall , Jürgen Klingauf , Stephan Huveneers , Sven Meuth , Lars Jakobsson , Lydia Sorokin
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引用次数: 0

Abstract

Basement membranes (BMs) are critical but frequently ignored components of the vascular system. Using high-resolution confocal imaging of whole-mount-stained mesenteric arteries, we identify integrins, vinculin, focal adhesion kinase (FAK) and several BM proteins including laminins as novel components of myoendothelial junctions (MEJs), anatomical microdomains that are emerging as regulators of cross-talk between endothelium and smooth muscle cells (SMCs). Electron microscopy revealed multiple layers of the endothelial BM that surround endothelial projections into the smooth muscle layer as structural characteristics of MEJs. The shear-responsive calcium channel TRPV4 is broadly distributed in endothelial cells and occurs in a proportion of MEJs where it localizes to the tips of the endothelial projections that are in contact with the underlying SMCs. In mice lacking the major endothelial laminin isoform, laminin 411 (Lama4−/−), which we have previously shown over-dilate in response to shear and exhibit a compensatory laminin 511 upregulation, localization of TRPV4 at the endothelial-SMC interface in MEJs was increased. Endothelial laminins do not affect TRPV4 expression, rather in vitro electrophysiology studies using human umbilical cord arterial endothelial cells revealed enhanced TRPV4 signalling upon culturing on an RGD-motif containing domain of laminin 511. Hence, integrin-mediated interactions with laminin 511 in MEJ structures unique to resistance arteries modulate TRPV4 localization at the endothelial-smooth muscle interface in MEJs and signalling over this shear-response molecule.

内皮基底膜层粘连蛋白-在小鼠和人类肌肉内皮连接和剪切应力交流中的新参与者。
基底膜是血管系统中重要但经常被忽视的组成部分。通过对染色的肠系膜动脉进行高分辨率共聚焦成像,我们确定整合素、长春花蛋白、粘着斑激酶(FAK)和包括层粘连蛋白在内的几种BM蛋白是肌内皮连接(MEJs)的新成分,这些解剖微结构域正在成为内皮和平滑肌细胞(SMC)之间串扰的调节因子。电子显微镜显示,作为MEJ的结构特征,内皮BM的多层包围着进入平滑肌层的内皮突起。剪切响应性钙通道TRPV4广泛分布于内皮细胞中,并以一定比例的MEJ出现,其中它定位于与下面的SMC接触的内皮突起的尖端。在缺乏主要内皮层粘连蛋白亚型层粘连蛋白411(Lama4-/-)的小鼠中,TRPV4在MEJs内皮SMC界面的定位增加,我们之前已经显示层粘连蛋白对剪切的反应过度扩张,并表现出代偿性层粘连蛋白511上调。内皮层粘连蛋白不影响TRPV4的表达,相反,使用人脐带动脉内皮细胞的体外电生理学研究显示,在层粘连蛋白511的含有RGD基序的结构域上培养时,TRPV4信号增强。因此,整合素介导的与阻力动脉特有的MEJ结构中的层粘连蛋白511的相互作用调节了TRPV4在MEJ中内皮平滑肌界面的定位以及通过该剪切反应分子的信号传导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Matrix Biology
Matrix Biology 生物-生化与分子生物学
CiteScore
11.40
自引率
4.30%
发文量
77
审稿时长
45 days
期刊介绍: Matrix Biology (established in 1980 as Collagen and Related Research) is a cutting-edge journal that is devoted to publishing the latest results in matrix biology research. We welcome articles that reside at the nexus of understanding the cellular and molecular pathophysiology of the extracellular matrix. Matrix Biology focusses on solving elusive questions, opening new avenues of thought and discovery, and challenging longstanding biological paradigms.
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