Department of Pediatrics, University of Wisconsin School of Medicine and Public Health, Madison, Wisconsin 53792-4108, USA.
Am J Physiol Lung Cell Mol Physiol. 2010 Nov;299(5):L607-20. doi: 10.1152/ajplung.00390.2009. Epub 2010 Jul 23.
Integration of cell adhesive, survival, and proliferative processes is essential for capillary morphogenesis of endothelial cells (EC) in vitro and vascular development and function in vivo. Unfortunately, the molecular and cellular mechanisms that impact these processes are poorly defined. Here we examined how lack of bim and/or bcl-2 expression impact lung EC function. The absence of bcl-2 or bim had a significant impact on EC adhesion and migration. Lack of bcl-2 expression decreased lung EC migration, whereas lack of bim expression increased migration compared with their wild-type counterparts. Decreased adhesion to fibronectin and vitronectin was observed in both bcl-2-/- and bim-/- lung EC, with bcl-2-/- EC having very little adhesion to either matrix protein. Capillary morphogenesis was greatly diminished in bcl-2-/- EC, which correlated with decreased lung alveolarization in vivo, an angiogenesis-dependent process. We also observed aberrant production of extracellular matrix proteins, eNOS expression, and nitric oxide production in bcl-2-/- lung EC, which could contribute to inability to undergo capillary morphogenesis. The changes in cell adhesion and migration noted in the absence of bim or bcl-2 were independent of their impact on apoptosis. We observed no significant affect on the steady-state rate of apoptosis of lung EC in the absence of bim or bcl-2. Thus, bcl-2 family members, bim and bcl-2, play a central role in modulation of EC proangiogenic properties, which goes beyond their role as simple mediators of mitochondrial homeostasis and apoptosis.
细胞黏附、存活和增殖过程的整合对于体外内皮细胞(EC)的毛细血管形态发生以及体内血管发育和功能至关重要。不幸的是,影响这些过程的分子和细胞机制还没有被很好地定义。在这里,我们研究了缺乏 bim 和/或 bcl-2 表达如何影响肺 EC 的功能。缺乏 bcl-2 或 bim 对 EC 的黏附和迁移有显著影响。缺乏 bcl-2 表达会降低肺 EC 的迁移,而缺乏 bim 表达则会增加迁移,与野生型相比。在 bcl-2-/-和 bim-/-肺 EC 中均观察到对纤维连接蛋白和 vitronectin 的黏附减少,而 bcl-2-/-EC 对这两种基质蛋白的黏附很少。bcl-2-/-EC 的毛细血管形态发生大大减少,这与体内肺肺泡化减少有关,肺泡化是一个依赖血管生成的过程。我们还观察到 bcl-2-/-肺 EC 中细胞外基质蛋白、eNOS 表达和一氧化氮产生的异常,这可能导致无法进行毛细血管形态发生。在缺乏 bim 或 bcl-2 的情况下,细胞黏附和迁移的变化与它们对细胞凋亡的影响无关。我们没有观察到在缺乏 bim 或 bcl-2 的情况下肺 EC 凋亡的稳态速率有显著影响。因此,bcl-2 家族成员 bim 和 bcl-2 在调节 EC 促血管生成特性方面发挥着核心作用,这超出了它们作为线粒体动态平衡和凋亡简单调节剂的作用。