首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Identification of the zinc-dependent endothelial cell binding protein for high molecular weight kininogen and factor XII: identity with the receptor that binds to the globular heads of C1q (gC1q-R).
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Identification of the zinc-dependent endothelial cell binding protein for high molecular weight kininogen and factor XII: identity with the receptor that binds to the globular heads of C1q (gC1q-R).

机译:高分子量激肽原和因子XII的锌依赖性内皮细胞结合蛋白的鉴定:与与C1q的球状头部结合的受体(gC1q-R)相同。

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摘要

High molecular weight kininogen (HK) and factor XII are known to bind to human umbilical vein endothelial cells (HUVEC) in a zinc-dependent and saturable manner indicating that HUVEC express specific binding site(s) for those proteins. However, identification and immunochemical characterization of the putative receptor site(s) has not been previously accomplished. In this report, we have identified a cell surface glycoprotein that is a likely candidate for the HK binding site on HUVECs. When solubilized HUVEC membranes were subjected to an HK-affinity column in the presence or absence of 50 microM ZnCl2 and the bound membrane proteins eluted, a single major protein peak was obtained only in the presence of zinc. SDS/PAGE analysis and silver staining of the protein peak revealed this protein to be 33 kDa and partial sequence analysis matched the NH2 terminus of gC1q-R, a membrane glycoprotein that binds to the globular "heads" of C1q. Two other minor proteins of approximately 70 kDa and 45 kDa were also obtained. Upon analysis by Western blotting, the 33-kDa band was found to react with several monoclonal antibodies (mAbs) recognizing different epitopes on gC1q-R. Ligand and dot blot analyses revealed zinc-dependent binding of biotinylated HK as well as biotinylated factor XII to the isolated 33-kDa HUVEC molecule as well as recombinant gC1q-R. In addition, binding of 125I-HK to HUVEC cells was inhibited by selected monoclonal anti-gC1q-R antibodies. C1q, however, did not inhibit 125I-HK binding to HUVEC nor did those monoclonals known to inhibit C1q binding to gC1q-R. Taken together, the data suggest that HK (and factor XII) bind to HUVECs via a 33-kDa cell surface glycoprotein that appears to be identical to gC1q-R but interact with a site on gC1q-R distinct from that which binds C1q.
机译:已知高分子量激肽原(HK)和因子XII以锌依赖性和饱和方式结合人脐静脉内皮细胞(HUVEC),表明HUVEC表达这些蛋白质的特异性结合位点。但是,先前尚未完成对推定受体位点的鉴定和免疫化学表征。在本报告中,我们鉴定了一种细胞表面糖蛋白,它可能是HUVEC上HK结合位点的候选基因。当在存在或不存在50 microM ZnCl2的情况下,将溶解的HUVEC膜置于HK亲和柱上,并洗脱结合的膜蛋白时,只有在锌存在下才能获得单个主要蛋白峰。 SDS / PAGE分析和蛋白峰的银染表明该蛋白为33 kDa,部分序列分析与gC1q-R的NH2末端匹配,gC1q-R是一种与C1q的球状“头部”结合的膜糖蛋白。还获得了另外两个大约70 kDa和45 kDa的次要蛋白质。通过蛋白质印迹分析后,发现33 kDa条带与识别gC1q-R上不同表位的几种单克隆抗体(mAb)反应。配体和斑点印迹分析揭示了锌的生物素化HK和生物素化因子XII与分离的33 kDa HUVEC分子以及重组gC1q-R的锌依赖性结合。此外,所选的单克隆抗gC1q-R抗体抑制125I-HK与HUVEC细胞的结合。但是,C1q不会抑制125I-HK与HUVEC的结合,已知的那些单克隆抗体也不会抑制C1q与gC1q-R的结合。两者合计,数据表明HK(和因子XII)通过33 kDa细胞表面糖蛋白与HUVEC结合,该表面蛋白似乎与gC1q-R相同,但与gC1q-R上的一个位点相互作用而不同于结合C1q的位点。

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