Connolly D T, Heuvelman D M, Nelson R, Olander J V, Eppley B L, Delfino J J, Siegel N R, Leimgruber R M, Feder J
Department of Cell Culture and Biochemistry, Monsanto Company, St. Louis, Missouri 63167.
J Clin Invest. 1989 Nov;84(5):1470-8. doi: 10.1172/JCI114322.
Vascular permeability factor (VPF) is an Mr 40-kD protein that has been purified from the conditioned medium of guinea pig line 10 tumor cells grown in vitro, and increases fluid permeability from blood vessels when injected intradermally. Addition of VPF to cultures of vascular endothelial cells in vitro unexpectedly stimulated cellular proliferation. VPF promoted the growth of new blood vessels when administered into healing rabbit bone grafts or rat corneas. The identity of the growth factor activity with VPF was established in four ways: (a) the molecular weight of the activity in preparative SDS-PAGE was the same as VPF (Mr approximately 40 kD); (b) multiple isoforms (pI greater than or equal to 8) for both VPF and the growth-promoting activity were observed; (c) a single, unique NH2-terminal amino acid sequence was obtained; (d) both growth factor and permeability-enhancing activities were immunoadsorbed using antipeptide IgG that recognized the amino terminus of VPF. Furthermore, 125I-VPF was shown to bind specifically and with high affinity to endothelial cells in vitro and could be chemically cross-linked to a high-molecular weight cell surface receptor, thus demonstrating a mechanism whereby VPF can interact directly with endothelial cells. Unlike other endothelial cell growth factors, VPF did not stimulate [3H]thymidine incorporation or promote growth of other cell types including mouse 3T3 fibroblasts or bovine smooth muscle cells. VPF, therefore, appears to be unique in its ability to specifically promote increased vascular permeability, endothelial cell growth, and angio-genesis.
血管通透因子(VPF)是一种分子量为40kD的蛋白质,已从体外培养的豚鼠10号线瘤细胞的条件培养基中纯化得到,皮内注射时可增加血管的液体通透性。在体外将VPF添加到血管内皮细胞培养物中时,意外地刺激了细胞增殖。将VPF施用于愈合中的兔骨移植或大鼠角膜时,可促进新血管的生长。通过以下四种方式确定了生长因子活性与VPF的一致性:(a)制备性SDS-PAGE中该活性的分子量与VPF相同(分子量约为40kD);(b)观察到VPF和促生长活性均有多种同工型(pI大于或等于8);(c)获得了单一、独特的NH2末端氨基酸序列;(d)使用识别VPF氨基末端的抗肽IgG免疫吸附生长因子和通透性增强活性。此外,125I-VPF在体外显示出与内皮细胞特异性且高亲和力地结合,并且可以化学交联到高分子量的细胞表面受体上,从而证明了VPF可以直接与内皮细胞相互作用的机制。与其他内皮细胞生长因子不同,VPF不会刺激[3H]胸腺嘧啶核苷掺入或促进包括小鼠3T3成纤维细胞或牛平滑肌细胞在内的其他细胞类型的生长。因此,VPF在特异性促进血管通透性增加、内皮细胞生长和血管生成方面的能力似乎是独特的。