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ROS 介导线粒体醛氧化酶人源同工酶失活的作用机制研究

Mechanistic insights into the ROS-mediated inactivation of human aldehyde oxidase.

机构信息

Department of Molecular Enzymology, Institute of Biochemistry and Biology, University of Potsdam, Germany.

Helmholtz Center for Infection Research, Braunschweig, Germany.

出版信息

FEBS Lett. 2023 Jul;597(13):1792-1801. doi: 10.1002/1873-3468.14669. Epub 2023 Jun 3.

Abstract

Human aldehyde oxidase (hAOX1) is a molybdoenzyme that oxidizes aldehydes and N-heterocyclic compounds, thereby generating hydrogen peroxide (H O ) and superoxide during turnover. hAOX1 has been shown previously to be inactivated under turnover conditions by H O . Here, we investigated the effect of exogenously added H O on the activity of hAOX1. We show that exogenously added H O did not affect the enzyme activity under aerobic conditions, but completely inactivated the enzyme under anaerobic conditions. We propose that this effect is based on the reducing power of H O and the susceptibility of the reduced molybdenum cofactor (Moco) to lose the sulfido ligand. When oxygen is present, the enzyme is rapidly reoxidized. We believe that our study is significant in understanding the detailed effect of reactive oxygen species on the inactivation of hAOX1 and other molybdoenzymes.

摘要

人源醛氧化酶(hAOX1)是一种钼酶,可氧化醛和杂环化合物,从而在周转过程中生成过氧化氢(H2O2)和超氧化物。先前的研究表明,hAOX1 在周转条件下会被 H2O2 失活。在这里,我们研究了外源性添加的 H2O2 对 hAOX1 活性的影响。我们发现,外源性添加的 H2O2 在有氧条件下不会影响酶活性,但在无氧条件下会完全使酶失活。我们提出,这种效应基于 H2O2 的还原能力和还原态钼辅因子(Moco)易失去硫代配体的特性。当氧气存在时,酶会迅速被重新氧化。我们相信,我们的研究对于理解活性氧对 hAOX1 和其他钼酶失活的详细影响具有重要意义。

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