植物过氧化物酶的反应机理。

The Italian journal of biochemistry Pub Date : 2004-03-01
Silvia Longu, Rosaria Medda, Alessandra Padiglia, Jens Z Pedersen, Giovanni Floris
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引用次数: 0

摘要

以辣根过氧化物酶的反应方案为基础,介绍了III类植物过氧化物酶的催化作用。该机制包括四个不同的步骤:(a)过氧化物与血红素-铁(III)结合形成非常不稳定的过氧化物复合物,化合物0;(b)铁氧化生成化合物I,这是一种在卟啉环上具有-阳离子自由基的铁基物质;(c)化合物I被一个底物分子还原生成底物自由基和另一个铁基物质化合物II;(d)化合物II被第二底物分子还原以释放第二底物自由基并使天然酶再生。在不利条件下,可以形成一些无活性的酶种,称为死端酶种。两个钙离子通常存在于植物过氧化物酶中,对催化效率很重要。
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The reaction mechanism of plant peroxidases.

The catalysis of class III plant peroxidases is described based on the reaction scheme of horseradish peroxidase. The mechanism consists in four distinct steps: (a) binding of peroxide to the heme-Fe(III) to form a very unstable peroxide complex, Compound 0; (b) oxidation of the iron to generate Compound I, a ferryl species with a pi-cation radical in the porphyrin ring; (c) reduction of Compound I by one substrate molecule to produce a substrate radical and another ferryl species, Compound II; (d) reduction of Compound II by a second substrate molecute to release a second substrate radical and regenerate the native enzyme. Under unfavourable conditions some inactive enzyme species can be formed, known as dead-end species. Two calcium ions are normally found in plant peroxidases and appear to be important for the catalytic efficiency.

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