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备解素系统C3激活酶复合物的形成与组成。其组分在固相胰蛋白酶-琼脂糖上的顺序组装。

Formation and composition of the C3 activating enzyme complex of the properdin system. Sequential assembly of its components on solid-phase trypsin-agarose.

作者信息

Vogt W, Schmidt G, Dieminger L, Lynen R

出版信息

Z Immunitatsforsch Exp Klin Immunol. 1975 Jul;149(5):440-55.

PMID:126576
Abstract

An active C3 cleaving enzyme is generated when properdin factor B (glycine-rich beta-glycoprotein, GBG) is activated (GBG is cleaved) by factor D in the presence of C3b and Mg++. Factor D can be replaced by trypsin in this reaction but even then C3b and Mg++ are required. In the absence of C3b and/or Mg++ trypsin does not generate C3 cleaving activity from GBG although it cleaves GBG and releases its GGG fragment (B) under these conditions as well. Addition of C3b to GGG immediately after its release does not yield a C3 cleaving enzyme. These findings indicate that C3b, GBG and Mg++ interact, and that only in association with C3b can GBG be cleaved in a way that its enzyme activity, residing in a C3b, GGG complex, is expressed. The complex is labile (half-life at 20 degrees C: 9 minutes); Mg++ does not affect its stability nor is it essential for the activity. It was possible to sequentially fix on agarose the essential components of the C3 cleaving enzyme and thus to elucidate the single steps and the order of its formation. C3 was activated and the resulting C3b fragment fixed on agarose by incubating C3 with trypsin covalently bound to the agarose. The agarose-C3b intermediate was capable of binding GBG provided Mg++ was present. GBG could then be cleaved by factor D or trypsin added in solution; the solid-phase-fixed complex obtained had C3 cleaving activity, in the presence as well as absence of Mg++. Omission of any of these steps or components, or changes in the sequence did not give rise to an active enzyme. Mixtures of C3b, GBG and Mg++ have weak C3 cleaving activity by themselves. C3 cleavage in such incubation mixtures proceeds slowly for hours and is not accompanied by cleavage of GBG. There is thus complete analogy between the CVF-dependent and C3b-dependent C3 cleaving systems. C3b and CVF act in the same way, they form a reversible, weakly active C3 cleaving complex with GBG and Mg++, the activity of which is markedly enhanced but becomes subject to decay when GBG is cleaved by trypsin-like enzymes while bound to CVF or C3b.

摘要

当备解素因子B(富含甘氨酸的β-糖蛋白,GBG)在C3b和Mg++存在的情况下被因子D激活(GBG被裂解)时,会产生一种活性C3裂解酶。在该反应中,因子D可用胰蛋白酶替代,但即便如此仍需要C3b和Mg++。在没有C3b和/或Mg++的情况下,胰蛋白酶虽能裂解GBG并在这些条件下释放其GGG片段(B),却无法从GBG产生C3裂解活性。GGG片段释放后立即添加C3b不会产生C3裂解酶。这些发现表明,C3b、GBG和Mg++相互作用,且只有与C3b结合时,GBG才能以其酶活性(存在于C3b、GGG复合物中)得以表达的方式被裂解。该复合物不稳定(20℃时半衰期为9分钟);Mg++不影响其稳定性,对其活性也非必需。有可能将C3裂解酶的必需成分依次固定在琼脂糖上,从而阐明其形成的单个步骤及顺序。通过将C3与共价结合在琼脂糖上的胰蛋白酶孵育来激活C3,并将产生的C3b片段固定在琼脂糖上。只要存在Mg++,琼脂糖-C3b中间体就能结合GBG。然后可通过添加到溶液中的因子D或胰蛋白酶裂解GBG;无论有无Mg++,所获得的固相固定复合物都具有C3裂解活性。省略这些步骤或成分中的任何一个,或改变顺序都不会产生活性酶。C3b、GBG和Mg++的混合物自身具有较弱的C3裂解活性。在这种孵育混合物中C3裂解会缓慢进行数小时,且不会伴随GBG的裂解。因此,补体旁路因子(CVF)依赖性和C3b依赖性C3裂解系统之间存在完全的相似性。C3b和CVF作用方式相同,它们与GBG和Mg++形成一种可逆的、弱活性的C3裂解复合物,当GBG在与CVF或C3b结合时被类胰蛋白酶裂解酶裂解时,该复合物的活性会显著增强,但随后会衰减。

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