Moser T L, Kenan D J, Ashley T A, Roy J A, Goodman M D, Misra U K, Cheek D J, Pizzo S V
Department of Pathology and Duke University School of Nursing, Duke University Medical Center, Durham, NC 27710, USA.
Proc Natl Acad Sci U S A. 2001 Jun 5;98(12):6656-61. doi: 10.1073/pnas.131067798. Epub 2001 May 29.
Angiostatin blocks tumor angiogenesis in vivo, almost certainly through its demonstrated ability to block endothelial cell migration and proliferation. Although the mechanism of angiostatin action remains unknown, identification of F(1)-F(O) ATP synthase as the major angiostatin-binding site on the endothelial cell surface suggests that ATP metabolism may play a role in the angiostatin response. Previous studies noting the presence of F(1) ATP synthase subunits on endothelial cells and certain cancer cells did not determine whether this enzyme was functional in ATP synthesis. We now demonstrate that all components of the F(1) ATP synthase catalytic core are present on the endothelial cell surface, where they colocalize into discrete punctate structures. The surface-associated enzyme is active in ATP synthesis as shown by dual-label TLC and bioluminescence assays. Both ATP synthase and ATPase activities of the enzyme are inhibited by angiostatin as well as by antibodies directed against the alpha- and beta-subunits of ATP synthase in cell-based and biochemical assays. Our data suggest that angiostatin inhibits vascularization by suppression of endothelial-surface ATP metabolism, which, in turn, may regulate vascular physiology by established mechanisms. We now have shown that antibodies directed against subunits of ATP synthase exhibit endothelial cell-inhibitory activities comparable to that of angiostatin, indicating that these antibodies function as angiostatin mimetics.
血管抑素几乎可以肯定是通过其已证实的阻断内皮细胞迁移和增殖的能力,在体内阻断肿瘤血管生成。尽管血管抑素的作用机制尚不清楚,但F(1)-F(O)ATP合酶被确定为内皮细胞表面主要的血管抑素结合位点,这表明ATP代谢可能在血管抑素反应中起作用。先前的研究指出在内皮细胞和某些癌细胞上存在F(1)ATP合酶亚基,但并未确定该酶在ATP合成中是否具有功能。我们现在证明,F(1)ATP合酶催化核心的所有成分都存在于内皮细胞表面,它们共定位成离散的点状结构。如双标记TLC和生物发光测定所示,表面相关酶在ATP合成中具有活性。在基于细胞的生化测定中,血管抑素以及针对ATP合酶α和β亚基的抗体均抑制该酶的ATP合酶和ATP酶活性。我们的数据表明,血管抑素通过抑制内皮表面的ATP代谢来抑制血管生成,而这反过来又可能通过既定机制调节血管生理。我们现在已经表明,针对ATP合酶亚基的抗体表现出与血管抑素相当的内皮细胞抑制活性,表明这些抗体起到血管抑素模拟物的作用。