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首页> 外文期刊>Journal of Bioenergetics and Biomembranes >Towards the mechanisms involved in the antioxidant action of mn ~(III) [meso-tetrakis(4-n-methyl pyridinium) porphyrin] in mitochondria
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Towards the mechanisms involved in the antioxidant action of mn ~(III) [meso-tetrakis(4-n-methyl pyridinium) porphyrin] in mitochondria

机译:探讨mn〜(III)[间-四(4-n-甲基吡啶)卟啉]在线粒体中的抗氧化作用机理

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Aerobic organisms are afforded with an antioxidant enzymatic apparatus that more recently has been recognized to include cytochrome c, as it is able to prevent hydrogen peroxide generation by returning electrons from the superoxide ion back to the respiratory chain. The present study investigated the glutathione peroxidase (GPx), superoxide dismutase (SOD) and cytochrome c-like antioxidant activities of para Mn(III)TMPyP in isolated rat liver mitochondria (RLM) and mitoplasts. In RLM, MnIIITMPyP decreased the lipid-peroxide content associated with glutathione (GSH) depletion consistent with the use of GSH as a reducing agent for high valence states of MnIIITMPyP. SOD and cytochrome c antioxidant activities were also investigated. MnIITMPyP was able to reduce ferric cytochrome c, indicating the potential to remove a superoxide ion by returning electrons back to the respiratory chain. In antimicyn A-poisoned mitoplasts, MnIIITMPyP efficiently decreased the EPR signal of DMPO-OH adduct concomitant with GSH depletion. The present results are consistent with SOD and GPx activities for MnIIITMPyP and do not exclude cytochrome c-like activity. However, considering that para MnIIITMPyP more efficiently reduces, rather than oxidizes, superoxide ion; electron transfer from the MnIITMPyP to the respiratory chain might not significantly contribute to the superoxide ion removal, since most of MnIITMPyP is expected to be produced at the expense of NADPH/GSH oxidation. The present results suggest GPx-like activity to be the principal antioxidant mechanism of MnIIITMPyP, whose efficiency is dependent on the NADPH/GSH content in cells.
机译:为好氧生物提供了一种抗氧化剂酶设备,最近该设备被认为包括细胞色素c,因为它能够通过使电子从超氧离子返回到呼吸链来防止过氧化氢的产生。本研究调查了谷胱甘肽过氧化物酶(GPx),超氧化物歧化酶(SOD)和对Mn(III)TMPyP在分离的大鼠肝线粒体(RLM)和线粒体中的细胞色素c样抗氧化活性。在RLM中,MnIIITMPyP降低了与谷胱甘肽(GSH)消耗相关的脂质过氧化物含量,这与使用GSH作为MnIIITMPyP高价态的还原剂相一致。还研究了SOD和细胞色素c的抗氧化活性。 MnIITMPyP能够还原铁细胞色素c,表明有可能通过将电子返回到呼吸链来去除超氧化物离子。在抗micynyn A毒性的原生质体中,MnIIITMPyP有效降低了DMSH-OH加合物与GSH消耗相关的EPR信号。目前的结果与MnIIITMPyP的SOD和GPx活性一致,并且不排除细胞色素c样活性。但是,考虑到对MnIIITMPyP更有效地还原而不是氧化超氧离子;电子从MnIITMPyP到呼吸链的转移可能不会显着促进超氧离子的去除,因为大多数MnIITMPyP的产生都是以NADPH / GSH氧化为代价的。目前的结果表明类GPx活性是MnIIITMPyP的主要抗氧化机制,其效率取决于细胞中NADPH / GSH的含量。

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