Sioussat T M, Dvorak H F, Brock T A, Senger D R
Department of Pathology, Beth Israel Hospital, Boston, Massachusetts.
Arch Biochem Biophys. 1993 Feb 15;301(1):15-20. doi: 10.1006/abbi.1993.1109.
Vascular permeability factor (VPF), also known as vascular endothelial cell growth factor (VEGF), is a 34- to 43-kDa dimeric protein synthesized and secreted by a variety of tumor and normal cells. At nanomolar concentrations, VPF causes an increase in microvascular permeability and is thought to be responsible for enhanced permeability of tumor blood vessels and for the fluid accumulation associated with solid and ascites tumors. In addition, VPF/VEGF is a mitogen for endothelial cells and may play an important role in maintaining vascular endothelium and in promoting tumor angiogenesis. Antibodies were raised against a series of synthetic peptides derived from the predicted human VPF amino acid sequence. The antibodies were assayed for their ability to bind native and denatured/reduced VPF. Antibodies to peptides from the N- and C-termini bound both denatured/reduced and native VPF; antibodies directed to internal segments (e.g., amino acids 27-48 and 85-101) strongly bound denatured/reduced VPF but were substantially less effective at binding native VPF. These results suggest that the N- and C-termini are exposed regions of the protein in solution. Individually, antibodies to the N- and C-termini each partially blocked VPF permeability activity, and, in combination, blocked nearly 100% of this activity. Also, the N- and C-terminal antibodies blocked the VPF-mediated stimulation of both endothelial cell growth and increase in free cytosolic calcium.
血管通透因子(VPF),也被称为血管内皮细胞生长因子(VEGF),是一种由多种肿瘤细胞和正常细胞合成并分泌的34至43千道尔顿的二聚体蛋白。在纳摩尔浓度下,VPF会导致微血管通透性增加,被认为与肿瘤血管通透性增强以及实体瘤和腹水瘤相关的液体蓄积有关。此外,VPF/VEGF是内皮细胞的有丝分裂原,可能在维持血管内皮和促进肿瘤血管生成中发挥重要作用。针对从预测的人VPF氨基酸序列衍生的一系列合成肽制备了抗体。检测了这些抗体结合天然和变性/还原VPF的能力。针对N端和C端肽段的抗体既能结合变性/还原的VPF,也能结合天然VPF;针对内部片段(如氨基酸27 - 48和85 - 101)的抗体能强烈结合变性/还原的VPF,但结合天然VPF的效果要差得多。这些结果表明,N端和C端是该蛋白在溶液中的暴露区域。单独来看,针对N端和C端的抗体各自部分阻断了VPF的通透活性,而联合使用时则几乎能阻断100%的这种活性。此外,N端和C端抗体还阻断了VPF介导的内皮细胞生长刺激以及游离胞质钙的增加。