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内皮素-2 在神经视网膜中的信号传递促进了内皮细胞尖端细胞的状态,并抑制了血管生成。

Endothelin-2 signaling in the neural retina promotes the endothelial tip cell state and inhibits angiogenesis.

机构信息

Departments of Molecular Biology and Genetics, Neuroscience, and Ophthalmology and Howard Hughes Medical Institute, Johns Hopkins University School of Medicine, Baltimore, MD 21205.

出版信息

Proc Natl Acad Sci U S A. 2013 Oct 1;110(40):E3830-9. doi: 10.1073/pnas.1315509110. Epub 2013 Sep 16.

Abstract

Endothelin signaling is required for neural crest migration and homeostatic regulation of blood pressure. Here, we report that constitutive overexpression of Endothelin-2 (Edn2) in the mouse retina perturbs vascular development by inhibiting endothelial cell migration across the retinal surface and subsequent endothelial cell invasion into the retina. Developing endothelial cells exist in one of two states: tip cells at the growing front and stalk cells in the vascular plexus behind the front. This division of endothelial cell states is one of the central organizing principles of angiogenesis. In the developing retina, Edn2 overexpression leads to overproduction of endothelial tip cells by both morphologic and molecular criteria. Spatially localized overexpression of Edn2 produces a correspondingly localized endothelial response. Edn2 overexpression in the early embryo inhibits vascular development at midgestation, but Edn2 overexpression in developing skin and brain has no discernible effect on vascular structure. Inhibition of retinal angiogenesis by Edn2 requires expression of Endothelin receptor A but not Endothelin receptor B in the neural retina. Taken together, these observations imply that the neural retina responds to Edn2 by synthesizing one or more factors that promote the endothelial tip cell state and inhibit angiogenesis. The response to Edn2 is sufficiently potent that it overrides the activities of other homeostatic regulators of angiogenesis, such as Vegf.

摘要

内皮素信号传导对于神经嵴迁移和血压的稳态调节是必需的。在这里,我们报告内皮素-2(Edn2)在小鼠视网膜中的组成型过表达通过抑制内皮细胞穿过视网膜表面的迁移以及随后内皮细胞侵入视网膜来扰乱血管发育。发育中的内皮细胞存在于两种状态之一:生长前沿的尖端细胞和前沿后面的血管丛中的茎细胞。这种内皮细胞状态的划分是血管生成的核心组织原则之一。在发育中的视网膜中,Edn2 过表达通过形态和分子标准导致内皮尖端细胞的过度产生。Edn2 的空间局部过表达产生相应的内皮反应。胚胎早期的 Edn2 过表达在中孕期抑制血管发育,但在发育中的皮肤和大脑中的 Edn2 过表达对血管结构没有明显影响。Edn2 通过内皮素受体 A 但不是内皮素受体 B 在神经视网膜中抑制血管生成。综上所述,这些观察结果表明,神经视网膜通过合成一种或多种促进内皮尖端细胞状态和抑制血管生成的因子对 Edn2 做出反应。对 Edn2 的反应非常强烈,以至于它可以克服血管生成的其他稳态调节剂的作用,例如 Vegf。

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