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对氧磷酶1(一种抗氧化蛋白)的氧化失活及其对抗氧化作用的影响。

Oxidative inactivation of paraoxonase1, an antioxidant protein and its effect on antioxidant action.

作者信息

Nguyen Su Duy, Sok Dai-Eun

机构信息

College of Pharmacy, Chungnam National University, Yuseong-Ku, Taejon 305-764, South Korea.

出版信息

Free Radic Res. 2003 Dec;37(12):1319-30.

Abstract

Paraoxonase1 (PON1), one of antioxidant proteins to protect low density lipoprotein (LDL) from the oxidation, is known to lose its activity in the oxidative environment. Here, we attempted to elucidate the possible mechanisms for the oxidative inactivation of PON1, and to examine the capability of hydroxyl radicals-inactivated PON1 to prevent against LDL oxidation. Of various oxidative systems, the ascorbate/Cu2+ system was the most potent in inactivating the purified PON1 (PON1) as well as HDL-bound PON1 (HDL-PON1). In contrast to a limited inactivation by Fe2+ (2.0 microM), the inclusion of Cu2+ (0.1-1.0 microM) remarkably enhanced the inactivation of PON1 in the presence of ascorbate (0.5mM). A similar result was also obtained with the inactivation of HDL-PON1. The inactivation of PON1 by ascorbate/Cu2+ was pevented by catalase, but not general hydroxyl radical scavengers, supporting inactivation. In addition, Cu2+ alone inactivated PON1, either soluble or HDL-bound, by different mechanisms, concentration-dependent. Separately, there was a reverse relationship between the inactivation of PON1 and its preventive action against LDL oxidation during Cu2+-induced oxidation of LDL. Noteworthy, ascorbate/Cu2+-inactivated PON1, which was charaterized by the partial loss of histidine residues, expressed a lower protection against Cu2+-induced LDL oxidation, compared to native PON1. Based on these results, it is proposed that metal-catalyzed oxidation may be a primary factor to cause the decrease of HDL-associated PON1 activity under oxidative stress, and radicals-induced inactivation of PON1 may lead to the decrease in its antioxidant action against LDL oxidation.

摘要

对氧磷酶1(PON1)是一种保护低密度脂蛋白(LDL)免受氧化的抗氧化蛋白,已知其在氧化环境中会失去活性。在此,我们试图阐明PON1氧化失活的可能机制,并研究羟基自由基失活的PON1预防LDL氧化的能力。在各种氧化系统中,抗坏血酸/Cu2+系统在使纯化的PON1(PON1)以及与高密度脂蛋白结合的PON1(HDL-PON1)失活方面最为有效。与Fe2+(2.0微摩尔)导致的有限失活相反,在存在抗坏血酸(0.5毫摩尔)的情况下,加入Cu2+(0.1 - 1.0微摩尔)显著增强了PON1的失活。HDL-PON1失活也得到了类似结果。过氧化氢酶可阻止抗坏血酸/Cu2+对PON1的失活,但一般的羟基自由基清除剂则不能,这支持了失活作用。此外,单独的Cu2+通过不同机制、浓度依赖性地使可溶性或与HDL结合的PON1失活。另外,在Cu2+诱导的LDL氧化过程中,PON1的失活与其对LDL氧化的预防作用之间存在反向关系。值得注意的是,与天然PON1相比,以组氨酸残基部分丢失为特征的抗坏血酸/Cu2+失活的PON1对Cu2+诱导的LDL氧化的保护作用较低。基于这些结果,有人提出金属催化氧化可能是氧化应激下导致HDL相关PON1活性降低的主要因素,并认为自由基诱导的PON1失活可能导致其对LDL氧化的抗氧化作用降低。

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