Department of Physiology, University of Arizona, Tucson, AZ 85724, USA.
Dev Biol. 2013 Jan 15;373(2):338-48. doi: 10.1016/j.ydbio.2012.10.032. Epub 2012 Nov 7.
Venous valves play a crucial role in blood circulation, promoting the one-way movement of blood from superficial and deep veins towards the heart. By preventing retrograde flow, venous valves spare capillaries and venules from being subjected to damaging elevations in pressure, especially during skeletal muscle contraction. Pathologically, valvular incompetence or absence of valves are common features of venous disorders such as chronic venous insufficiency and varicose veins. The underlying causes of these conditions are not well understood, but congenital venous valve aplasia or agenesis may play a role in some cases. Despite progress in the study of cardiac and lymphatic valve morphogenesis, the molecular mechanisms controlling the development and maintenance of venous valves remain poorly understood. Here, we show that in valved veins of the mouse, three gap junction proteins (Connexins, Cxs), Cx37, Cx43, and Cx47, are expressed exclusively in the valves in a highly polarized fashion, with Cx43 on the upstream side of the valve leaflet and Cx37 on the downstream side. Surprisingly, Cx43 expression is strongly induced in the non-valve venous endothelium in superficial veins following wounding of the overlying skin. Moreover, we show that in Cx37-deficient mice, venous valves are entirely absent. Thus, Cx37, a protein involved in cell-cell communication, is one of only a few proteins identified so far as critical for the development or maintenance of venous valves. Because Cxs are necessary for the development of valves in lymphatic vessels as well, our results support the notion of common molecular pathways controlling valve development in veins and lymphatic vessels.
静脉瓣膜在血液循环中起着至关重要的作用,促进血液从浅静脉和深静脉单向流向心脏。通过防止逆流,静脉瓣膜使毛细血管和小静脉免受因骨骼肌收缩而导致的破坏性高压的影响。在病理上,瓣膜功能不全或瓣膜缺失是慢性静脉功能不全和静脉曲张等静脉疾病的常见特征。这些疾病的根本原因尚不清楚,但先天性静脉瓣膜发育不全或缺失在某些情况下可能起作用。尽管在心脏和淋巴瓣膜形态发生的研究方面取得了进展,但控制静脉瓣膜发育和维持的分子机制仍知之甚少。在这里,我们表明在小鼠有瓣静脉中,三种缝隙连接蛋白(连接蛋白,Cxs),Cx37、Cx43 和 Cx47,以高度极化的方式仅在瓣膜中表达,瓣膜小叶的上游侧有 Cx43,下游侧有 Cx37。令人惊讶的是,在皮肤表面受伤后,浅层静脉中非瓣膜静脉内皮中 Cx43 的表达被强烈诱导。此外,我们表明在 Cx37 缺陷小鼠中,静脉瓣膜完全缺失。因此,Cx37 是一种参与细胞间通讯的蛋白质,是迄今为止被确定对静脉瓣膜发育或维持至关重要的少数几种蛋白质之一。由于 Cxs 对于淋巴管瓣膜的发育也是必需的,因此我们的结果支持控制静脉和淋巴管瓣膜发育的共同分子途径的概念。