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人类髓过氧化物酶对硫氰酸盐氧化作用的新见解。

New insights into thiocyanate oxidation by human myeloperoxidase.

作者信息

Schlorke Denise, Flemmig Jörg, Gau Jana, Furtmüller Paul G, Obinger Christian, Arnhold Jürgen

机构信息

Institute for Medical Physics and Biophysics, Medical Faculty, University of Leipzig, Leipzig, Germany.

Department of Chemistry, Division of Biochemistry, University of Natural Resources and Life Sciences, Vienna, Austria.

出版信息

J Inorg Biochem. 2016 Sep;162:117-126. doi: 10.1016/j.jinorgbio.2016.06.019. Epub 2016 Jun 15.

Abstract

Human myeloperoxidase (MPO) uses chloride and thiocyanate as physiological substrates at neutral pH. Oxidation of thiocyanate to hypothiocyanite mediated by the redox intermediate Compound I rapidly restores the ferric state of MPO. At low thiocyanate concentration and in the presence of hydrogen peroxide the observed reaction sequence is Compound I→ferric MPO→Compound II→MPO-cyanide complex, whereas at high thiocyanate concentrations and in the absence of HO the only observed transition is Compound I→ferric MPO. The reaction of ferric MPO with hypothiocyanite directly forms the MPO-cyanide complex, whereas a transient product derived from the reaction between hypothiocyanite and hydrogen peroxide is demonstrated to mediate the conversion of ferric MPO to Compound II. Mechanisms for those reactions are discussed and proposed.

摘要

人髓过氧化物酶(MPO)在中性pH条件下将氯离子和硫氰酸盐用作生理底物。由氧化还原中间体化合物I介导的硫氰酸盐氧化为次硫氰酸盐会迅速恢复MPO的铁状态。在低硫氰酸盐浓度且存在过氧化氢的情况下,观察到的反应顺序为化合物I→铁MPO→化合物II→MPO-氰化物复合物,而在高硫氰酸盐浓度且不存在HO的情况下,唯一观察到的转变是化合物I→铁MPO。铁MPO与次硫氰酸盐的反应直接形成MPO-氰化物复合物,而次硫氰酸盐与过氧化氢之间反应产生的瞬态产物被证明可介导铁MPO向化合物II的转化。讨论并提出了这些反应的机制。

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