Regard Jean B, Scheek Sigrid, Borbiev Talaibek, Lanahan Anthony A, Schneider Armin, Demetriades Anna-Maria, Hiemisch Holger, Barnes Carol A, Verin Alexander D, Worley Paul F
Department of Neuroscience, Johns Hopkins University, Baltimore, Maryland 21205, USA.
J Neurosci. 2004 Apr 21;24(16):4092-103. doi: 10.1523/JNEUROSCI.4252-03.2004.
Vascular endothelium forms a continuous, semipermeable barrier that regulates the transvascular movement of hormones, macromolecules, and other solutes. Here, we describe a novel immediate early gene that is expressed selectively in vascular endothelial cells, verge (vascular early response gene). Verge protein includes an N-terminal region of approximately 70 amino acids with modest homology (approximately 30% identity) to Apolipoprotein L but is otherwise unique. Verge mRNA and protein are induced selectively in the endothelium of adult vasculature by electrical or chemical seizures. Verge expression appears to be responsive to local tissue conditions, because it is induced in the hemisphere ipsilateral to transient focal cerebral ischemia. In contrast to the transient expression in adult, Verge mRNA and protein are constitutively expressed at high levels in the endothelium of developing tissues (particularly heart) in association with angiogenesis. Verge mRNA is induced in cultured endothelial cells by defined growth factors and hypoxia. Verge protein is dramatically increased by cysteine proteinase inhibitors, suggesting rapid turnover, and is localized to focal regions near the periphery of the cells. Endothelial cell lines that stably express Verge form monolayers that show enhanced permeability in response to activation of protein kinase C by phorbol esters. This response is accompanied by reorganization of the actin cytoskeleton and the formation of paracellular gaps. These studies suggest that Verge functions as a dynamic regulator of endothelial cell signaling and vascular function.
血管内皮形成一个连续的半透性屏障,调节激素、大分子和其他溶质的跨血管运动。在此,我们描述了一种新的即刻早期基因,即verge(血管早期反应基因),它在血管内皮细胞中选择性表达。Verge蛋白包含一个约70个氨基酸的N端区域,与载脂蛋白L有适度的同源性(约30%的同一性),但在其他方面是独特的。Verge mRNA和蛋白在成年血管的内皮中通过电惊厥或化学惊厥被选择性诱导。Verge表达似乎对局部组织状况有反应,因为它在短暂性局灶性脑缺血同侧的半球中被诱导。与在成年个体中的短暂表达相反,Verge mRNA和蛋白在发育中的组织(特别是心脏)的内皮中与血管生成相关地持续高水平表达。Verge mRNA在培养的内皮细胞中被特定的生长因子和缺氧诱导。Verge蛋白被半胱氨酸蛋白酶抑制剂显著增加,提示其快速周转,并定位于细胞周边附近的局灶区域。稳定表达Verge的内皮细胞系形成单层,在佛波酯激活蛋白激酶C时显示出增强的通透性。这种反应伴随着肌动蛋白细胞骨架的重组和细胞间间隙的形成。这些研究表明,Verge作为内皮细胞信号传导和血管功能的动态调节因子发挥作用。