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补体经典途径高亲和力C5转化酶的形成。

Formation of high affinity C5 convertase of the classical pathway of complement.

作者信息

Rawal Nenoo, Pangburn Michael K

机构信息

Department of Biochemistry, University of Texas Health Science Center, Tyler, Texas 75703, USA.

出版信息

J Biol Chem. 2003 Oct 3;278(40):38476-83. doi: 10.1074/jbc.M307017200. Epub 2003 Jul 23.

DOI:10.1074/jbc.M307017200
PMID:12878586
Abstract

C3/C5 convertase is a serine protease that cleaves C3 and C5. In the present study we examined the C5 cleaving properties of classical pathway C3/C5 convertase either bound to the surface of sheep erythrocytes or in its free soluble form. Kinetic parameters revealed that the soluble form of the enzyme (C4b,C2a) cleaved C5 at a catalytic rate similar to that of the surface-bound form (EAC1,C4b,C2a). However, both forms of the enzyme exhibited a poor affinity for the substrate, C5, as indicated by a high Km (6-9 microM). Increasing the density of C4b on the cell surface from 8,000 to 172,000 C4b/cell did not influence the Km. Very high affinity C5 convertases were generated only when the low affinity C3/C5 convertases (EAC1,C4b,C2a) were allowed to deposit C3b by cleaving native C3. These C3b-containing C3/C5 convertases exhibited Km (0.0051 microM) well below the normal concentration of C5 in blood (0.37 microM). The data suggest that C3/C5 convertase assembled with either monomeric C4b or C4b-C4b complexes are inefficient in capturing C5 but cleave C3 opsonizing the cell surface with C3b for phagocytosis. Deposition of C3b converts the enzymes to high affinity C5 convertases, which cleave C5 in blood at catalytic rates approaching Vmax, thereby switching from C3 to C5 cleavage. Comparison of the kinetic parameters with those of the alternative pathway convertase indicates that the 6-9-fold greater catalytic rate of the classical pathway C5 convertase may compensate for the fewer numbers of C5 convertase sites generated upon activation of this pathway.

摘要

C3/C5转化酶是一种裂解C3和C5的丝氨酸蛋白酶。在本研究中,我们检测了与绵羊红细胞表面结合的或游离可溶性形式的经典途径C3/C5转化酶的C5裂解特性。动力学参数显示,酶的可溶性形式(C4b,C2a)裂解C5的催化速率与表面结合形式(EAC1,C4b,C2a)相似。然而,两种形式的酶对底物C5的亲和力都很差,高Km值(6 - 9微摩尔)表明了这一点。将细胞表面C4b的密度从8000个C4b/细胞增加到172000个C4b/细胞,并未影响Km值。只有当低亲和力的C3/C5转化酶(EAC1,C4b,C2a)通过裂解天然C3沉积C3b时,才会产生非常高亲和力的C5转化酶。这些含有C3b的C3/C5转化酶的Km值(0.0051微摩尔)远低于血液中C5的正常浓度(0.37微摩尔)。数据表明,与单体C4b或C4b - C4b复合物组装的C3/C5转化酶在捕获C5方面效率低下,但能裂解C3并用C3b调理细胞表面以进行吞噬作用。C3b的沉积将这些酶转化为高亲和力的C5转化酶,后者以接近Vmax的催化速率裂解血液中的C5,从而从C3裂解转变为C5裂解。将动力学参数与替代途径转化酶的参数进行比较表明,经典途径C5转化酶高6 - 9倍的催化速率可能弥补了该途径激活时产生的C5转化酶位点数量较少的不足。

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