Cadmium inhibition of a structural wheat peroxidase.

D A Converso, M E Fernández, M L Tomaro
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引用次数: 15

Abstract

The major peroxidase from 15-day-old wheat plants was purified to homogeneity by FPLC ion exchange and molecular exclusion chromatography. It consists of a single polypeptide of M(r) 37,500 according to gel filtration and SDS-PAGE and has a pI of 7.0. Kinetics of pyrogallol peroxidation showed that the enzyme follows the accepted mechanism for peroxidase, with kinetic constants k(1) =4.4x10(6) M(-1) s(-1) and k(3) =8.6x10(5) M(-1) s(-1). The effect of different metal ions was assayed on peroxidase activity. None of the ions used had any effect on enzyme activity, except for Cd(II), which was an inhibitor. This was an unexpected and novel finding for a peroxidase. The kinetics of pyrogallol peroxidation at different concentrations of Cd(II) have been studied and a mechanism for Cd(II) inhibition proposed. The results obtained could explain, in part, cadmium-induced oxidative stress.

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镉对小麦结构过氧化物酶的抑制作用。
采用FPLC离子交换和分子排斥色谱法纯化了15日龄小麦植株的主要过氧化物酶。根据凝胶过滤和SDS-PAGE,它由单个多肽M(r) 37,500组成,pI为7.0。邻苯三酚过氧化动力学表明,酶符合公认的过氧化物酶机制,动力学常数k(1) =4.4 × 10(6) M(-1) s(-1), k(3) =8.6 × 10(5) M(-1) s(-1)。测定了不同金属离子对过氧化物酶活性的影响。除了Cd(II)是一种抑制剂外,所使用的离子对酶的活性没有任何影响。对于过氧化物酶来说,这是一个意想不到的新发现。研究了邻苯三酚在不同浓度Cd(II)下的过氧化动力学,并提出了抑制Cd(II)的机制。获得的结果可以部分解释镉诱导的氧化应激。
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