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在变性条件下补体成分C3和C4的自溶片段化,这是与α2-巨球蛋白共有的特性。

Autolytic fragmentation of complement components C3 and C4 under denaturing conditions, a property shared with alpha 2-macroglobulin.

作者信息

Sim R B, Sim E

出版信息

Biochem J. 1981 Jan 1;193(1):129-41. doi: 10.1042/bj1930129.

Abstract

The alpha polypeptide chain of the complement protein C3 splits into two fragments of 74 000 and 46 000 apparent mol.wt. under certain conditions used to prepare the protein for SDS (sodium dodecyl sulphate)/polyacrylamide-gel electrophoresis. The cleavage reaction occurs over a wide range of temperatures and from pH 4.6 to 10.6 in the presence of denaturants such as urea, SDS and guanidine hydrochloride. It is also induced by heat-denaturation of C3 in the absence of chemical denaturants. The reaction occurs only with haemolytically active C3, and is not observed with hydroxylamine-inactivated C3 or with C3b. A similar cleavage of the alpha-chain of complement component C4 occurs under the same conditions, forming fragments of 53 000 and 41 000 apparent mol.wt. This reaction is again specific for haemolytically active C4, and does not occur with C4b or hydroxylamine-inactivated C4. The complement component C5, although structurally similar to C3 and C4, does not undergo a reaction of this type. The characteristics of the denaturation-induced cleavage of C3 and C4 match those described for the 'heat-induced' cleavage of alpha 2-macroglobulin [Harpel, Hayes & Hugli (1979) J. Biol. Chem. 254, 8669-8678]. Cleavage of alpha 2-macroglobulin is also specific for the active form of the protein, and does not occur with chemically inactivated or proteinase-cleaved forms. The unusual conditions and specificity of the peptide-bond cleavage in all three proteins suggest that it is an autolytic process rather than being the result of trace proteinase contamination. The active forms of C3, C4 and alpha 2-macroglobulin have the transient ability to form covalent bonds after activation. The autolytic cleavage reaction is likely to be related to the covalent-bond-forming reactions of these proteins.

摘要

补体蛋白C3的α多肽链在用于制备蛋白质进行SDS(十二烷基硫酸钠)/聚丙烯酰胺凝胶电泳的某些条件下,会分裂成两条表观分子量分别为74000和46000的片段。在诸如尿素、SDS和盐酸胍等变性剂存在的情况下,裂解反应在很宽的温度范围以及pH值从4.6至10.6的条件下都会发生。在没有化学变性剂的情况下,C3的热变性也能诱导该反应。该反应仅发生在具有溶血活性的C3上,而用羟胺灭活的C3或C3b则未观察到该反应。补体成分C4的α链在相同条件下也会发生类似的裂解,形成表观分子量为53000和41000的片段。该反应同样特异性地发生在具有溶血活性的C4上,C4b或羟胺灭活的C4不会发生此反应。补体成分C5虽然在结构上与C3和C4相似,但不会发生这种类型的反应。C3和C4的变性诱导裂解特征与α2-巨球蛋白的“热诱导”裂解所描述的特征相符[哈佩尔、海斯和胡格利(1979年)《生物化学杂志》254卷,8669 - 8678页]。α2-巨球蛋白的裂解也特异性地发生在该蛋白质的活性形式上,化学灭活或蛋白酶裂解的形式不会发生此反应。所有这三种蛋白质中肽键裂解的异常条件和特异性表明,这是一个自溶过程,而非微量蛋白酶污染的结果。C3、C4和α2-巨球蛋白的活性形式在激活后具有形成共价键的短暂能力。自溶裂解反应可能与这些蛋白质的共价键形成反应有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2f19/1162584/184caa1b2f5a/biochemj00408-0133-a.jpg

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