Li Chenggang, Issa Razao, Kumar Pat, Hampson Ian N, Lopez-Novoa Jose M, Bernabeu Carmelo, Kumar Shant
Department of Pathology, Medical School, University of Manchester and Christie Hospital, Manchester M13 9PT, UK.
J Cell Sci. 2003 Jul 1;116(Pt 13):2677-85. doi: 10.1242/jcs.00470. Epub 2003 May 13.
CD105, a marker of endothelial cells, is abundantly expressed in tissues undergoing angiogenesis and is a receptor for transforming growth factorbeta. The pivotal role of CD105 in the vascular system was demonstrated by the severe vascular defects that occur in CD105-knockout mice, but the exact mechanisms for CD105 regulation of vascular development have not been fully elucidated. In light of the function of CD105 and the importance of hypoxia in neovascularisation, we speculated that CD105 is involved in hypoxia-initiated angiogenesis. Using tissue-cultured human microvascular endothelial cells, we have investigated the effects of hypoxic stress on CD105 gene expression. Hypoxia induced a significant increase in membrane-bound and secreted CD105 protein levels. CD105 mRNA and promoter activity were also markedly elevated, the latter returning to the basal level after 16 hours of hypoxic stress. Hypoxia induced cell cycle arrest at the G0/G1 phases and massive cell apoptosis after 24 hours through a reduction in the Bcl-2 to Bax ratio, downregulation of Bcl-XL and Mcl-1, and upregulation of caspase-3 and caspase-8. The consequence of CD105 upregulation was revealed using an antisense approach and a TUNEL assay. Suppression of CD105 increased cell apoptosis under hypoxic stress in the absence of TGFbeta1. Furthermore, hypoxia and TGFbeta1 synergistically induced apoptosis in the CD105-deficient cells but not in the control cells. We conclude that hypoxia is a potent stimulus for CD105 gene expression in vascular endothelial cells, which in turn attenuates cell apoptosis and thus contributes to angiogenesis.
CD105是内皮细胞的一种标志物,在发生血管生成的组织中大量表达,并且是转化生长因子β的受体。CD105基因敲除小鼠出现的严重血管缺陷证明了CD105在血管系统中的关键作用,但CD105调节血管发育的确切机制尚未完全阐明。鉴于CD105的功能以及缺氧在新血管形成中的重要性,我们推测CD105参与缺氧引发的血管生成。我们使用组织培养的人微血管内皮细胞,研究了缺氧应激对CD105基因表达的影响。缺氧导致膜结合型和分泌型CD105蛋白水平显著增加。CD105 mRNA和启动子活性也明显升高,在缺氧应激16小时后,启动子活性恢复到基础水平。缺氧导致细胞周期在G0/G1期停滞,并在24小时后通过降低Bcl-2与Bax的比例、下调Bcl-XL和Mcl-1以及上调caspase-3和caspase-8诱导大量细胞凋亡。使用反义方法和TUNEL检测揭示了CD105上调的后果。在没有TGFβ1的情况下,抑制CD105会增加缺氧应激下的细胞凋亡。此外,缺氧和TGFβ1协同诱导CD105缺陷细胞凋亡,但不诱导对照细胞凋亡。我们得出结论,缺氧是血管内皮细胞中CD105基因表达的有力刺激因素,这反过来又减弱细胞凋亡,从而促进血管生成。