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含血红素的蛋白质和酶与氢过氧化物的反应:自由基观点

Reaction of haem containing proteins and enzymes with hydroperoxides: the radical view.

作者信息

Svistunenko Dimitri A

机构信息

Department of Biological Sciences, University of Essex, Wivenhoe Park, Colchester, Essex CO4 3SQ, United Kingdom.

出版信息

Biochim Biophys Acta. 2005 Feb 25;1707(1):127-55. doi: 10.1016/j.bbabio.2005.01.004.

Abstract

The reaction between hydroperoxides and the haem group of proteins and enzymes is important for the function of many enzymes but has also been implicated in a number of pathological conditions where oxygen binding proteins interact with hydrogen peroxide or other peroxides. The haem group in the oxidized Fe3+ (ferric) state reacts with hydroperoxides with a formation of the Fe4+=O (oxoferryl) haem state and a free radical primarily located on the pi-system of the haem. The radical is then transferred to an amino acid residue of the protein and undergoes further transfer and transformation processes. The free radicals formed in this reaction are reviewed for a number of proteins and enzymes. Their previously published EPR spectra are analysed in a comparative way. The radicals directly detected in most systems are tyrosyl radicals and the peroxyl radicals formed on tryptophan and possibly cysteine. The locations of the radicals in the proteins have been reported as follows: Tyr133 in soybean leghaemoglobin; alphaTyr42, alphaTrp14, betaTrp15, betaCys93, (alphaTyr24-alphaHis20), all in the alpha- and beta-subunits of human haemoglobin; Tyr103, Tyr151 and Trp14 in sperm whale myoglobin; Tyr103, Tyr146 and Trp14 in horse myoglobin; Trp14, Tyr103 and Cys110 in human Mb. The sequence of events leading to radical formation, transformation and transfer, both intra- and intermolecularly, is considered. The free radicals induced by peroxides in the enzymes are reviewed. Those include: lignin peroxidase, cytochrome c peroxidase, cytochrome c oxidase, turnip isoperoxidase 7, bovine catalase, two isoforms of prostaglandin H synthase, Mycobacterium tuberculosis and Synechocystis PCC6803 catalase-peroxidases.

摘要

氢过氧化物与蛋白质和酶的血红素基团之间的反应对许多酶的功能很重要,但也与一些病理状况有关,在这些状况下,氧结合蛋白会与过氧化氢或其他过氧化物相互作用。处于氧化态Fe3+(铁离子)的血红素基团与氢过氧化物反应,形成Fe4+=O(氧合亚铁)血红素状态以及主要位于血红素π体系上的自由基。然后该自由基转移至蛋白质的氨基酸残基,并经历进一步的转移和转化过程。本文综述了多种蛋白质和酶在该反应中形成的自由基。对它们之前发表的电子顺磁共振光谱进行了比较分析。在大多数系统中直接检测到的自由基是酪氨酸自由基以及在色氨酸和可能的半胱氨酸上形成的过氧自由基。蛋白质中自由基的位置报告如下:大豆豆血红蛋白中的Tyr133;人血红蛋白α和β亚基中的αTyr42、αTrp14、βTrp15、βCys93、(αTyr24-αHis20);抹香鲸肌红蛋白中的Tyr103、Tyr151和Trp14;马肌红蛋白中的Tyr103、Tyr146和Trp14;人肌红蛋白中的Trp14、Tyr103和Cys110。本文考虑了导致自由基形成、转化和转移的分子内和分子间事件序列。综述了过氧化物在酶中诱导产生的自由基。这些酶包括:木质素过氧化物酶、细胞色素c过氧化物酶、细胞色素c氧化酶、芜菁异过氧化物酶7、牛过氧化氢酶、前列腺素H合酶的两种同工型、结核分枝杆菌和集胞藻PCC6803过氧化氢酶-过氧化物酶。

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