首页> 美国卫生研究院文献>The Journal of Biological Chemistry >2-Thioxanthines Are Mechanism-based Inactivators of Myeloperoxidase That Block Oxidative Stress during Inflammation
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2-Thioxanthines Are Mechanism-based Inactivators of Myeloperoxidase That Block Oxidative Stress during Inflammation

机译:2-硫代黄嘌呤是髓过氧化物酶的基于机制的灭活剂可阻止炎症过程中的氧化应激。

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摘要

Myeloperoxidase (MPO) is a prime candidate for promoting oxidative stress during inflammation. This abundant enzyme of neutrophils uses hydrogen peroxide to oxidize chloride to highly reactive and toxic chlorine bleach. We have identified 2-thioxanthines as potent mechanism-based inactivators of MPO. Mass spectrometry and x-ray crystal structures revealed that these inhibitors become covalently attached to the heme prosthetic groups of the enzyme. We propose a mechanism whereby 2-thioxanthines are oxidized, and their incipient free radicals react with the heme groups of the enzyme before they can exit the active site. 2-Thioxanthines inhibited MPO in plasma and decreased protein chlorination in a mouse model of peritonitis. They slowed but did not prevent neutrophils from killing bacteria and were poor inhibitors of thyroid peroxidase. Our study shows that MPO is susceptible to the free radicals it generates, and this Achilles' heel of the enzyme can be exploited to block oxidative stress during inflammation.
机译:髓过氧化物酶(MPO)是在炎症过程中促进氧化应激的主要候选药物。中性粒细胞的这种丰富的酶使用过氧化氢将氯化物氧化为高反应性和有毒的氯漂白剂。我们已经确定了2-thioxanthineses作为有效的基于机制的MPO灭活剂。质谱和x射线晶体结构表明这些抑制剂共价连接到酶的血红素修复基团上。我们提出了一种机制,其中2-噻吨黄嘌呤被氧化,并且它们的初始自由基在可以离开活性位点之前会与酶的血红素基团发生反应。在小鼠腹膜炎模型中,2-硫代黄嘌呤抑制血浆中的MPO并降低蛋白质氯化反应。他们放慢了速度,但没有阻止中性粒细胞杀死细菌,并且是甲状腺过氧化物酶的弱抑制剂。我们的研究表明,MPO易受其产生的自由基的影响,该酶的致命弱点可以被用来阻止炎症过程中的氧化应激。

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