Vascular Biology Laboratory, London Research Institute - Cancer Research UK, 44 Lincoln's Inn Fields, London WC2A 3PX, UK.
Biochem Soc Trans. 2009 Dec;37(Pt 6):1233-6. doi: 10.1042/BST0371233.
ECs (endothelial cells) in the developing vasculature are heterogeneous in morphology, function and gene expression. Inter-endothelial signalling via Dll4 (Delta-like 4) and Notch has recently emerged as a key regulator of endothelial heterogeneity, controlling arterial cell specification and tip versus stalk cell selection. During sprouting angiogenesis, tip cell formation is the default response to VEGF (vascular endothelial growth factor), whereas the stalk cell phenotype is acquired through Dll4/Notch-mediated lateral inhibition. Precisely how Notch signalling represses stalk cells from becoming tip cells remains unclear. Multiple components of the VEGFR (VEGF receptor) system are regulated by Notch, suggesting that quantitative differences in protein expression between adjacent ECs may provide key features in the formation of a functional vasculature. Computational modelling of this selection process in iterations, with experimental observation and validation greatly facilitates our understanding of the integrated processes at the systems level. We anticipate that the study of mosaic vascular beds of genetically modified ECs in dynamic interactions with wild-type ECs will provide a powerful tool for the investigation of the molecular control and cellular mechanisms of EC specification.
发育中的脉管系统中的 EC(内皮细胞)在形态、功能和基因表达上存在异质性。Dll4(Delta-like 4)和 Notch 介导的内皮细胞间信号传递最近被认为是内皮细胞异质性的关键调节因子,控制动脉细胞的特化和尖端细胞与 stalk 细胞的选择。在血管生成的发芽过程中,尖端细胞的形成是对 VEGF(血管内皮生长因子)的默认反应,而 stalk 细胞表型则是通过 Dll4/Notch 介导的侧向抑制获得的。 Notch 信号如何抑制 stalk 细胞成为尖端细胞仍不清楚。VEGFR(VEGF 受体)系统的多个组成部分受 Notch 调节,这表明相邻 EC 之间蛋白表达的定量差异可能为形成功能血管提供关键特征。通过迭代进行这种选择过程的计算建模,结合实验观察和验证,极大地促进了我们对系统水平上整合过程的理解。我们预计,对与野生型 EC 动态相互作用的遗传修饰 EC 的镶嵌血管床的研究将为研究 EC 特化的分子控制和细胞机制提供有力工具。