Cleary P P, Prahbu U, Dale J B, Wexler D E, Handley J
Department of Microbiology, University of Minnesota, Minneapolis 55455.
Infect Immun. 1992 Dec;60(12):5219-23. doi: 10.1128/iai.60.12.5219-5223.1992.
Compositional analysis of streptococcal C5a peptidase (SCPA) cleavage products from a synthetic peptide corresponding to the 20 C-terminal residues of C5a demonstrated that the target cleavage site is His-Lys rather than Lys-Asp, as previously suggested. A C5a peptide analog with Lys replaced by Gln was also subject to cleavage by SCPA. This confirmed that His-Lys rather than Lys-Asp is the scissile bond. Cleavage at histidine is unusual but is the same as that suggested for a peptidase produced by group B streptococci. Native C5 protein was also resistant to SCPA, suggesting that the His-Lys bond is inaccessible prior to proteolytic cleavage by C5 convertase. These experiments showed that the streptococcal C5a peptidase is highly specific for C5a and suggest that its function is not merely to process protein for metabolic consumption but to act primarily to eliminate this chemotactic signal from inflammatory foci.
对来自与C5a的20个C末端残基相对应的合成肽的链球菌C5a肽酶(SCPA)裂解产物进行的成分分析表明,目标裂解位点是His-Lys而非先前认为的Lys-Asp。将Lys替换为Gln的C5a肽类似物也会被SCPA裂解。这证实了His-Lys而非Lys-Asp是可裂解键。在组氨酸处的裂解并不常见,但与B组链球菌产生的一种肽酶的情况相同。天然C5蛋白也对SCPA具有抗性,这表明在被C5转化酶进行蛋白水解裂解之前,His-Lys键是无法接近的。这些实验表明,链球菌C5a肽酶对C5a具有高度特异性,并表明其功能不仅是为了代谢消耗而处理蛋白质,主要是为了从炎症灶中消除这种趋化信号。