Department of Infection, Immunity and Cardiovascular Disease, Medical School, University of Sheffield, Sheffield, UK.
The Bateson Centre, University of Sheffield, Sheffield, UK.
Nat Commun. 2019 Feb 13;10(1):732. doi: 10.1038/s41467-019-08590-7.
Angiogenesis requires co-ordination of multiple signalling inputs to regulate the behaviour of endothelial cells (ECs) as they form vascular networks. Vascular endothelial growth factor (VEGF) is essential for angiogenesis and induces downstream signalling pathways including increased cytosolic calcium levels. Here we show that transmembrane protein 33 (tmem33), which has no known function in multicellular organisms, is essential to mediate effects of VEGF in both zebrafish and human ECs. We find that tmem33 localises to the endoplasmic reticulum in zebrafish ECs and is required for cytosolic calcium oscillations in response to Vegfa. tmem33-mediated endothelial calcium oscillations are critical for formation of endothelial tip cell filopodia and EC migration. Global or endothelial-cell-specific knockdown of tmem33 impairs multiple downstream effects of VEGF including ERK phosphorylation, Notch signalling and embryonic vascular development. These studies reveal a hitherto unsuspected role for tmem33 and calcium oscillations in the regulation of vascular development.
血管生成需要多个信号输入的协调,以调节内皮细胞(ECs)的行为,因为它们形成血管网络。血管内皮生长因子(VEGF)是血管生成所必需的,它诱导下游信号通路,包括增加细胞浆内钙离子水平。在这里,我们表明跨膜蛋白 33(tmem33)在多细胞生物中没有已知的功能,对于在斑马鱼和人类 ECs 中介导 VEGF 的作用是必不可少的。我们发现 tmem33 在斑马鱼 ECs 中定位于内质网,并且是响应 Vegfa 引起的细胞浆钙离子振荡所必需的。tmem33 介导的内皮细胞钙离子振荡对于内皮尖端细胞丝状伪足和 EC 迁移的形成至关重要。tmem33 的全局或内皮细胞特异性敲低会损害 VEGF 的多种下游效应,包括 ERK 磷酸化、Notch 信号和胚胎血管发育。这些研究揭示了 tmem33 和钙离子振荡在调节血管发育中的一个迄今未被怀疑的作用。