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Histidine-Rich Glycoprotein Modulates the Anti-Angiogenic Effects of Vasculostatin

机译:组氨酸丰富的糖蛋白调节血管生成抑制素的抗血管生成作用。

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摘要

Brain angiogenesis inhibitor 1 (BAI1) is a transmembrane protein expressed on glial cells within the brain. Its expression is dramatically down-regulated in many glioblastomas, consistent with its functional ability to inhibit angiogenesis and tumor growth in vivo. We have shown that the soluble anti-angiogenic domain of BAI1 (termed Vstat120) requires CD36, a cell surface glycoprotein expressed on microvascular endothelial cells (MVECs), for it to elicit an anti-angiogenic response. We now report that Vstat120 binding to CD36 on MVECs activates a caspase-mediated pro-apoptotic pathway, and this effect is abrogated by histidine-rich glycoprotein (HRGP). HRGP is a circulating glycoprotein previously shown to function as a CD36 decoy to promote angiogenesis in the presence of thrombospondin-1 or −2. Data here show that Vstat120 specifically binds HRGP. Under favorable MVEC growth conditions this interaction allows chemotactic-directed migration as well as endothelial tube formation to persist in in vitro cellular systems, and increased tumor growth in vivo as demonstrated in both subcutaneous and orthotopic brain tumor models, concomitant with an increase in tumor vascularity. Finally, we show that HRGP expression is increased in human brain cancers, with the protein heavily localized to the basement membrane of the tumors. These data help define a novel angiogenic axis that could be exploited for the treatment of human cancers and other diseases where excess angiogenesis occurs.
机译:脑血管生成抑制剂1(BAI1)是在脑内神经胶质细胞上表达的跨膜蛋白。其表达在许多胶质母细胞瘤中显着下调,与其在体内抑制血管生成和肿瘤生长的功能能力相一致。我们已经表明,BAI1的可溶性抗血管生成域(称为Vstat120)需要CD36(一种表达在微血管内皮细胞(MVEC)上的细胞表面糖蛋白)才能引发抗血管生成反应。我们现在报告说,Vstat120与MVEC上的CD36结合会激活caspase介导的促凋亡途径,而这种作用被富含组氨酸的糖蛋白(HRGP)废除了。 HRGP是一种循环糖蛋白,先前显示其在血小板反应蛋白1或-2的存在下可充当CD36诱饵来促进血管生成。此处的数据显示Vstat120特异性结合HRGP。在有利的MVEC生长条件下,这种相互作用使趋化导向的迁移以及内皮管的形成在体外细胞系统中得以持续,并且在皮下和原位脑肿瘤模型中均证明了体内肿瘤的生长增加,并伴随着肿瘤血管的增加。最后,我们证明了在人脑癌中HRGP的表达增加了,并且该蛋白质大量定位在肿瘤的基底膜上。这些数据有助于定义新的血管生成轴,可将其用于治疗发生过度血管生成的人类癌症和其他疾病。

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