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次氯酸使线粒体烟酰胺腺嘌呤二核苷酸磷酸(NADP⁺)依赖性异柠檬酸脱氢酶失活。

Inactivation of mitochondrial NADP+-dependent isocitrate dehydrogenase by hypochlorous acid.

作者信息

Park Sin Young, Lee Su-Min, Shin Seoung Woo, Park Jeen-Woo

机构信息

School of Life Sciences and Biotechnology, College of Natural Sciences, Kyungpook National University, Taegu, South Korea.

出版信息

Free Radic Res. 2008 May;42(5):467-73. doi: 10.1080/10715760802098834.

Abstract

Myeoloperoxidase catalyses the formation of hypochlorous acid (HOCl) via reaction of H(2)O(2) with Cl(-) ion. Although HOCl is known to play a major role in the human immune system by killing bacteria and other invading pathogens, excessive generation of this oxidant is known to cause damage to tissue. Recently, it was demonstrated that the control of mitochondrial redox balance and oxidative damage is one of the primary functions of mitochondrial NADP(+)-dependent isocitrate dehydrogenase (IDPm) to supply NADPH for antioxidant systems. This study investigated whether the IDPm would be a vulnerable target of HOCl as a purified enzyme and in intact cells. Loss of enzyme activity was observed and the inactivation of IDPm was reversed by thiols. Transfection of HeLa cells with an IDPm small interfering RNA (siRNA) markedly enhanced HOCl-induced oxidative damage to cells. The HOCl-mediated damage to IDPm may result in the perturbation of the cellular antioxidant defense mechanisms and subsequently lead to a pro-oxidant condition.

摘要

髓过氧化物酶通过H₂O₂与Cl⁻离子反应催化次氯酸(HOCl)的形成。虽然已知HOCl通过杀死细菌和其他入侵病原体在人体免疫系统中发挥主要作用,但已知这种氧化剂的过度产生会导致组织损伤。最近,有研究表明,控制线粒体氧化还原平衡和氧化损伤是线粒体NADP⁺依赖性异柠檬酸脱氢酶(IDPm)的主要功能之一,可为抗氧化系统提供NADPH。本研究调查了IDPm作为一种纯化酶以及在完整细胞中是否会成为HOCl的易损靶点。观察到酶活性丧失,并且IDPm的失活可被硫醇逆转。用IDPm小干扰RNA(siRNA)转染HeLa细胞显著增强了HOCl诱导的细胞氧化损伤。HOCl介导的对IDPm的损伤可能导致细胞抗氧化防御机制的紊乱,随后导致促氧化状态。

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