Bohman Svante, Matsumoto Taro, Suh Kwang, Dimberg Anna, Jakobsson Lars, Yuspa Stuart, Claesson-Welsh Lena
Department of Genetics and Pathology, Uppsala University, Dag Hammarskjölds väg 20, S-751 85 Uppsala, Sweden.
J Biol Chem. 2005 Dec 23;280(51):42397-404. doi: 10.1074/jbc.M506724200. Epub 2005 Oct 20.
Formation of new vessels from pre-existing capillaries demands extensive reprogramming of endothelial cells through transcriptional and post-transcriptional events. We show that 120 protein spots in a two-dimensional isoelectric focusing/electrophoretic analysis were affected during vascular endothelial growth factor-A-induced endothelial cell tubular morphogenesis in vitro, as a result of changes in charge or expression level of the corresponding proteins. For about 22% of the spots, the protein products could be identified, of which several previously have been implicated in cytoskeletal reorganization and angiogenesis. One such protein was heat shock protein 27, a chaperone involved in beta-actin rearrangement that was identified as regulated in degree of serine phosphorylation. We also identified regulation of chloride intracellular channel 4 (CLIC4), the expression of which decreased during tubular morphogenesis. CLIC4 was expressed at high levels in resting vessels, whereas expression was modulated during pathological angiogenesis such as in tumor vessels. The subcellular localization of CLIC4 in endothelial cells was dependent on whether cells were engaged in proliferation or tube formation. Antisense- and small interfering RNA-mediated suppression of CLIC4 expression led to arrest in tubular morphogenesis. Our data implicate CLIC4 in formation of a vessel lumen.
从已有的毛细血管形成新血管需要通过转录和转录后事件对内皮细胞进行广泛的重编程。我们发现,在体外血管内皮生长因子-A诱导的内皮细胞管状形态发生过程中,二维等电聚焦/电泳分析中的120个蛋白点受到影响,这是相应蛋白质电荷或表达水平变化的结果。约22%的蛋白点能够鉴定出其蛋白质产物,其中一些先前已被证明与细胞骨架重组和血管生成有关。一种这样的蛋白质是热休克蛋白27,它是一种参与β-肌动蛋白重排的伴侣蛋白,被鉴定为丝氨酸磷酸化程度受到调控。我们还鉴定出氯离子细胞内通道4(CLIC4)的调控,其表达在管状形态发生过程中降低。CLIC4在静息血管中高水平表达,而在病理性血管生成(如肿瘤血管)过程中表达受到调节。CLIC4在内皮细胞中的亚细胞定位取决于细胞是参与增殖还是形成管腔。反义RNA和小干扰RNA介导的CLIC4表达抑制导致管状形态发生停滞。我们的数据表明CLIC4参与血管腔的形成。