Kam C M, McRae B J, Harper J W, Niemann M A, Volanakis J E, Powers J C
J Biol Chem. 1987 Mar 15;262(8):3444-51.
The specificity and reactivity of complement serine proteases D, B, Bb, C2, and C2a were determined using a series of peptide thioester substrates. The rates of thioester hydrolysis were measured using assay mixtures containing the thiol reagent 4,4'-dithiodipyridine at pH 7.5. Each substrate contained a P1 arginine residue, and the effect of various groups and amino acids in the P2, P3, P4, and P5 positions was determined using kcat/Km values to compare reactivities. Among peptide thioesters corresponding to the activation site sequence in B, dipeptide thioesters containing a P2 lysine residue were the best substrates for D. Extending the chain to include a P3 or P4 amino acid resulted in loss of activity, and neither the tripeptide nor the tetrapeptide containing the cleavage sequence of B was hydrolyzed. Overall, D cleaved fewer substrates and was 2-3 orders of magnitude less reactive than C1s against some thioester substrates. C2 and fragment C2a had comparable reactivities and hydrolyzed peptides containing Leu-Ala-Arg and Leu-Gly-Arg, which have the same sequence as the cleavage sites of C3 and C5, respectively. The best substrates for C2 and C2a were Z-Gly-Leu-Ala-Arg-SBzl and Z-Leu-Gly-Leu-Ala-Arg-SBzl, respectively, where Bzl is benzyl. B was the least reactive among these complement enzymes. The best substrate for B was Z-Lys-Arg-SBzl with a kcat/Km value of 1370 M-1 s-1. The catalytic fragment of B, Bb, had higher activity toward these peptide thioester substrates. The best substrate for Bb was Z-Gly-Leu-Ala-Arg-SBzl with a kcat/Km similar to C2a and 10 times higher than the value for B. Both C2a and Bb were considerably more reactive against C3-like than C5-like substrates. Bovine trypsin hydrolyzed thioester substrates with kcat/Km approximately 10(3) higher than the complement enzymes. These thioester substrates for D, B, and C2 should be quite useful in kinetic and active site studies of the purified enzymes.
使用一系列肽硫酯底物测定补体丝氨酸蛋白酶D、B、Bb、C2和C2a的特异性和反应活性。在pH 7.5条件下,使用含有硫醇试剂4,4'-二硫代二吡啶的测定混合物测量硫酯水解速率。每个底物都含有一个P1精氨酸残基,通过kcat/Km值比较反应活性,确定P2、P3、P4和P5位置上各种基团和氨基酸的影响。在与B中激活位点序列相对应的肽硫酯中,含有P2赖氨酸残基的二肽硫酯是D的最佳底物。将链延长至包含P3或P4氨基酸会导致活性丧失,含有B裂解序列的三肽和四肽均未被水解。总体而言,D裂解的底物较少,并且与C1s相比,对某些硫酯底物的反应活性低2至3个数量级。C2和片段C2a具有相当的反应活性,可水解分别含有Leu-Ala-Arg和Leu-Gly-Arg的肽,它们的序列分别与C3和C5的裂解位点相同。C2和C2a的最佳底物分别是Z-Gly-Leu-Ala-Arg-SBzl和Z-Leu-Gly-Leu-Ala-Arg-SBzl,其中Bzl是苄基。在这些补体酶中,B的反应活性最低。B的最佳底物是Z-Lys-Arg-SBzl,kcat/Km值为1370 M-1 s-1。B的催化片段Bb对这些肽硫酯底物具有更高的活性。Bb的最佳底物是Z-Gly-Leu-Ala-Arg-SBzl,其kcat/Km与C2a相似,比B的值高10倍。C2a和Bb对C3样底物的反应活性比对C5样底物高得多。牛胰蛋白酶水解硫酯底物的kcat/Km比补体酶高约10(3)。这些用于D、B和C2的硫酯底物在纯化酶的动力学和活性位点研究中应该非常有用。