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在铁(III)粪卟啉抗体复合物存在下,过氧化氢氧化邻联茴香胺的动力学。

Kinetics of oxidation of o-dianisidine by hydrogen peroxide in the presence of antibody complexes of iron(III) coproporphyrin.

作者信息

Savitsky A P, Nelen M I, Yatsmirsky A K, Demcheva M V, Ponomarev G V, Sinikov I V

机构信息

Laboratory of Molecular Immunology, A. N. Bach Institute of Biochemistry, Russian Academy of Sciences, Moscow.

出版信息

Appl Biochem Biotechnol. 1994 May-Jun;47(2-3):317-27. doi: 10.1007/BF02787943.

Abstract

The complex of iron(III) coproporphyrinI (FeCPI) with antibody D5E3 was studied as an artificial peroxidase, using o-dianisidine as a substrate. At saturation with respect to antibody, the initial rates of o-dianisidine oxidation are practically the same for free and bound FeCPI at a concentration 5 x 10(-9)M, but the catalytic rate constant (kc) for bound FeCPI exceed (kc) for free FeCPI by two- to three-fold. This difference can be explained by a real enhancement of (kc) at the antibody-active site. The dependence of initial rates of the reaction on substrate concentrations obeyed Michaelis-Menten kinetics and revealed substrate activation at high concentrations of o-dianisidine. A comparison of the Stern-Volmer constants for o-dianisidine-induced quenching of the porphyrin fluorescence proves that antibody-bound coproporphyrin is equivalently accessible to the substrate as protoporphyrin bound to apoperoxidase from horseradish peroxidase (HRP). Based on analysis of the (kc) dependence on H2O2 concentrations in the FeCPI-antibody system, we suggest that interaction with hydrogen peroxide is the rate-limiting step for the oxidation reaction.

摘要

以邻联茴香胺为底物,研究了铁(III)粪卟啉I(FeCPI)与抗体D5E3的复合物作为人工过氧化物酶的性质。在抗体饱和的情况下,对于浓度为5×10⁻⁹M的游离和结合态FeCPI,邻联茴香胺氧化的初始速率实际上是相同的,但结合态FeCPI的催化速率常数(kc)比游离FeCPI的催化速率常数高出两到三倍。这种差异可以通过抗体活性位点处kc的实际增强来解释。反应初始速率对底物浓度的依赖性符合米氏动力学,并揭示了在高浓度邻联茴香胺下的底物活化现象。邻联茴香胺诱导的卟啉荧光猝灭的斯特恩-沃尔默常数比较表明,与结合到辣根过氧化物酶(HRP)脱辅基过氧化物酶上的原卟啉一样,抗体结合的粪卟啉对底物的可及性相当。基于对FeCPI-抗体系统中kc对过氧化氢浓度依赖性的分析,我们认为与过氧化氢的相互作用是氧化反应的限速步骤。

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