Lamping N, Schumann R R, Burger R
Robert-Koch Institut, Nordufer 20, 13353, Berlin, Germany.
Mol Immunol. 2000 May;37(7):333-41. doi: 10.1016/s0161-5890(00)00058-4.
The complement system is an essential part of the innate defense, and C3 is an integral part of this powerful system. In previously identified complement C3 deficient guinea pigs only approx. 5% of the normal serum C3 level is detectable. No differences were found between in vitro C3 protein synthesis and C3 mRNA levels of cells from C3-deficient and wild-type animals and the amino acid sequences of both C3 proteins are identical as deduced from cDNA sequencing. Previously, the principal inability to form a C3 thiolester was discussed as a possible reason for this C3-deficiency. Here we report the isolation of two functionally different C3 species from the C3-deficient animals. Only one of these C3 proteins exhibits normal hemolytic activity and contains a thiolester group. The second C3 species is exclusively present in C3-deficient animals and lacks a thiolester, explaining its failure to express hemolytic activity. The presence of a second C3 species lacking a thiolester structure only in C3-deficient animals indicates that the stability of the thiolester may play a role in C3 deficiency. However further analysis of the in vitro stability of the thiolesters of C3 from normal and C3-deficient guinea pigs revealed no differences. A decreased in vivo thiolester stability might lead to the presence of C3 with and without a thiolester or alternatively the expression of two isoforms of C3 in these animals. Considering the central role of C3 in host defense, the mechanisms of C3 thiolester formation require further analysis.
补体系统是固有防御的重要组成部分,而C3是这个强大系统的一个不可或缺的部分。在先前鉴定出的补体C3缺陷豚鼠中,仅可检测到约5%的正常血清C3水平。在C3缺陷动物和野生型动物的细胞的体外C3蛋白合成和C3 mRNA水平之间未发现差异,并且从cDNA测序推导的两种C3蛋白的氨基酸序列是相同的。此前,主要讨论了无法形成C3硫酯可能是这种C3缺陷的一个原因。在此,我们报告从C3缺陷动物中分离出两种功能不同的C3种类。这些C3蛋白中只有一种表现出正常的溶血活性并含有硫酯基团。第二种C3种类仅存在于C3缺陷动物中且缺乏硫酯,这解释了其未能表达溶血活性的原因。仅在C3缺陷动物中存在缺乏硫酯结构的第二种C3种类,这表明硫酯的稳定性可能在C3缺陷中起作用。然而,对正常和C3缺陷豚鼠的C3硫酯的体外稳定性的进一步分析未发现差异。体内硫酯稳定性降低可能导致有和没有硫酯的C3的存在,或者导致这些动物中C3的两种同种型的表达。考虑到C3在宿主防御中的核心作用,C3硫酯形成的机制需要进一步分析。