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补体替代途径的C5转化酶。该酶游离形式和表面结合形式的动力学分析。

C5 convertase of the alternative pathway of complement. Kinetic analysis of the free and surface-bound forms of the enzyme.

作者信息

Rawal N, Pangburn M K

机构信息

Department of Biochemistry, University of Texas Health Science Center, Tyler, Texas 75710, USA.

出版信息

J Biol Chem. 1998 Jul 3;273(27):16828-35. doi: 10.1074/jbc.273.27.16828.

Abstract

Although proteolytic activation of the complement protein C5 initiates important defensive and occasionally pathological inflammatory reactions, the enzymatic properties of the enzymes responsible for this cleavage have never been examined. We have studied the kinetic parameters of the C5 convertase of the alternative pathway of complement, either bound to a zymosan surface or in its monomeric soluble form. C5 convertase enzymatic activity was measured as a function of C5 concentration by quantitating production of C5b,6 under physiological conditions of temperature, pH, and ionic strength. The C5 convertases appeared to follow Michaelis-Menten kinetics and exhibited similar catalytic rate constants (kcat). However, the surface-bound enzyme, ZymC3b,Bb had a Km (1.4 microM) that was 17 times lower than that of the soluble monomeric form of the enzyme, C3b,Bb (Km = 24 microM). The kcat for the cell-bound enzyme, ZymC3b,Bb was 0.0048 s-1 and that for soluble C3b,Bb was 0.0110 s-1. Both forms of the enzyme had a low turnover number at Vmax (0.23 to 0.68 C5/min/enzyme). Substituting Mg2+ for Ni2+ did not alter the kinetic parameters but lowered the half-life of the enzyme by 5-7-fold. The kinetic data presented demonstrate that the fluid phase C5 convertase, C3b,Bb, can cleave C5 without the aid of a second C3b molecule. The results also show that the greater enzymatic activity previously observed for the surface-bound C5 convertases is not due to higher catalytic efficiency but is solely due to higher affinity for the substrate C5. In blood, C5 concentrations are 3-4-fold below the Km determined for the surface-bound C5 convertase suggesting a direct correlation between the local C5 concentration and production of the anaphylatoxin C5a and the cytolytic C5b-9 complex.

摘要

虽然补体蛋白C5的蛋白水解激活引发了重要的防御反应,偶尔也会引发病理性炎症反应,但负责这种裂解的酶的酶学性质从未被研究过。我们研究了补体替代途径的C5转化酶的动力学参数,该酶要么结合在酵母聚糖表面,要么以其单体可溶性形式存在。通过在温度、pH和离子强度的生理条件下定量C5b,6的产生,将C5转化酶的酶活性作为C5浓度的函数进行测量。C5转化酶似乎遵循米氏动力学,并表现出相似的催化速率常数(kcat)。然而,表面结合的酶ZymC3b,Bb的Km(1.4 microM)比酶的可溶性单体形式C3b,Bb(Km = 24 microM)低17倍。细胞结合酶ZymC3b,Bb的kcat为0.0048 s-1,可溶性C3b,Bb的kcat为0.0110 s-1。两种形式的酶在Vmax时的周转数都很低(0.23至0.68 C5/分钟/酶)。用Mg2+替代Ni2+不会改变动力学参数,但会使酶的半衰期降低5至7倍。所呈现的动力学数据表明,液相C5转化酶C3b,Bb可以在没有第二个C3b分子的帮助下裂解C5。结果还表明,先前观察到的表面结合C5转化酶具有更高的酶活性,并非由于更高的催化效率,而仅仅是由于对底物C5的亲和力更高。在血液中,C5浓度比为表面结合C5转化酶测定的Km低3至4倍,这表明局部C5浓度与过敏毒素C5a和溶细胞性C5b-9复合物的产生之间存在直接相关性。

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