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眼镜蛇指名亚种和埃及眼镜蛇蛇毒因子的比较:与补体第五成分的结合亲和力及其裂解介导作用之间的相关性。

Comparison of Naja n. naja and Naja h. haje cobra-venom factors: correlation between binding affinity for the fifth component of complement and mediation of its cleavage.

作者信息

von Zabern I, Hinsch B, Przyklenk H, Schmidt G, Vogt W

出版信息

Immunobiology. 1980 Dec;157(4-5):499-514. doi: 10.1016/s0171-2985(80)80018-0.

Abstract

Two cobra-venom factors, one from Naja n. naja (CVFn), the other from Naja h. haje venom (CVFh), have been purified and compared, functionally and structurally. Both factors interacted with human factors B and DS to form a potent C3 convertase, CVFBb. However, while the convertase formed with CVFn did also efficiently cleave C5, CVFhBb had very little C5-cleaving potency only, in particular when human C5 was used as substrate. Studies with agarose-linked CVF preparations indicated that CVFh has only low binding affinity for C5gp and C5hu whereas CVFn binds to both C5 species with much higher affinity. Since C5-binding (to CVF or to C3b) is a prerequisite for its cleavage by C3/C5 convertases, the difference in binding potency explains the different C5-cleaving activity of the two CVF preparations. When a ligand for C5, surface-fixed C3b, is present, CVFhBb is also capable of cleaving C5. The difference in activities of CVFn and CVFh is reflected in their different potency to interfere with immune haemolysis and in causing indirect lysis by their complexes with activated factor B. By gel chromatography of the CVF preparations in C5-containing medium, a stoichiometric complex CVFn-C5 (1 + 1) could be demonstrated. An analogous complex of C5 was neither found with CVFh, nor with C3hu or soluble C3bhu. Structural differences between CVFn and CVFh were revealed by immunodiffusion analysis and by polyacrylamide-gel electrophoresis in presence of SDS. The data available so far provide, however, no clear information about the structure of the C5 binding site.

摘要

已对两种眼镜蛇毒因子进行了纯化,并在功能和结构方面进行了比较。一种来自印度眼镜蛇(CVFn),另一种来自埃及眼镜蛇毒液(CVFh)。两种因子均与人B因子和DS因子相互作用,形成一种有效的C3转化酶CVFBb。然而,虽然与CVFn形成的转化酶也能有效地裂解C5,但CVFhBb仅具有极低的C5裂解能力,尤其是当用人C5作为底物时。对琼脂糖偶联的CVF制剂的研究表明,CVFh对C5gp和C5hu的结合亲和力较低,而CVFn与这两种C5物种的结合亲和力要高得多。由于C5与CVF或C3b结合是其被C3/C5转化酶裂解的前提条件,结合能力的差异解释了两种CVF制剂不同的C5裂解活性。当存在C5的配体——表面固定的C3b时,CVFhBb也能够裂解C5。CVFn和CVFh活性的差异体现在它们干扰免疫溶血以及通过与活化B因子形成复合物导致间接溶血的不同能力上。通过在含C5的培养基中对CVF制剂进行凝胶色谱分析,证实了化学计量比的复合物CVFn-C5(1 + 1)。既未发现CVFh与C5形成类似复合物,也未发现其与C3hu或可溶性C3bhu形成类似复合物。免疫扩散分析和在SDS存在下的聚丙烯酰胺凝胶电泳揭示了CVFn和CVFh之间的结构差异。然而,目前可得的数据并未提供关于C5结合位点结构的明确信息。

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