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补体成分C5:一种被C4特异性C1s蛋白酶特异性切割的突变体的工程设计。

Complement component C5: engineering of a mutant that is specifically cleaved by the C4-specific C1s protease.

作者信息

Ogata R T, Low P J

机构信息

Medical Biology Institute, La Jolla, CA 92037, USA.

出版信息

J Immunol. 1995 Sep 1;155(5):2642-51.

PMID:7650393
Abstract

Previous studies showed that simply inserting or substituting a few amino acid residues immediately downstream of the proteolytic activation site in C component C3 renders that site susceptible to the C4-specific C1s protease. This report describes the results of extending those studies to the closely related component C5. We found that small changes, similar to those that made C3 susceptible to C1s, were insufficient to render C5 C1s-sensitive; and neither more extensive substitution downstream of the cleavage site with a 14 residue long segment from C4, nor upstream substitution with an 8 residue long C4 segment gave C1s cleavage. However, substitution of both the upstream and downstream segments gave a hybrid C5 protein, designated ASC4, which was cleaved by C1s. The protease sensitivity of ASC4 was curious, however, in that C1s was more active against the secreted extracellular biosynthetic precursor, pro-ASC4(E) than mature ASC4, whereas a C5-specific convertase cleaved the mature protein but not the precursor. In contrast, both mature and precursor forms of wild-type C5 were cleaved by the C5 convertase, but neither of course is recognized by C1s. These results demonstrate that a mutant C5 molecule can be constructed that is cleaved at the activation site by both C1s and C5 convertase. This suggests that the structures necessary for specific recognition by the two proteases have little or no overlap and that recognition by C5 convertase involves residues that are distant from the activation site itself.

摘要

先前的研究表明,只需在补体成分C3的蛋白水解激活位点紧邻下游插入或替换几个氨基酸残基,就能使该位点对C4特异性的C1s蛋白酶敏感。本报告描述了将这些研究扩展至密切相关的补体成分C5的结果。我们发现,与使C3对C1s敏感的那些变化类似的小变化,不足以使C5对C1s敏感;而且,在裂解位点下游用来自C4的14个残基长的片段进行更广泛的替换,以及在裂解位点上游用8个残基长的C4片段进行替换,均不能使C1s裂解。然而,对上游和下游片段都进行替换得到了一种杂合C5蛋白,命名为ASC4,它可被C1s裂解。然而,ASC4的蛋白酶敏感性很奇特,即C1s对分泌型细胞外生物合成前体pro-ASC4(E)的活性比对成熟ASC4的活性更高,而C5特异性转化酶可裂解成熟蛋白但不能裂解前体。相比之下,野生型C5的成熟形式和前体形式均可被C5转化酶裂解,但当然两者都不能被C1s识别。这些结果表明,可以构建一种在激活位点被C1s和C5转化酶都裂解的突变C5分子。这表明两种蛋白酶特异性识别所需的结构几乎没有重叠,且C5转化酶的识别涉及远离激活位点本身的残基。

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J Immunol. 1995 Sep 1;155(5):2642-51.
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