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1
Ceruloplasmin is an endogenous inhibitor of myeloperoxidase.铜蓝蛋白是髓过氧化物酶的内源性抑制剂。
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2
Superoxide is an antagonist of antiinflammatory drugs that inhibit hypochlorous acid production by myeloperoxidase.超氧化物是抗炎药物的拮抗剂,这些抗炎药物可抑制髓过氧化物酶产生次氯酸。
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3
Oxidation of tryptophan by redox intermediates of myeloperoxidase and inhibition of hypochlorous acid production.髓过氧化物酶的氧化还原中间体对色氨酸的氧化作用及次氯酸生成的抑制
Redox Rep. 2000;5(4):179-84. doi: 10.1179/135100000101535726.
4
Nitrite as a substrate and inhibitor of myeloperoxidase. Implications for nitration and hypochlorous acid production at sites of inflammation.亚硝酸盐作为髓过氧化物酶的底物和抑制剂。对炎症部位硝化作用和次氯酸生成的影响。
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5
Kinetic studies on the reaction of compound II of myeloperoxidase with ascorbic acid. Role of ascorbic acid in myeloperoxidase function.髓过氧化物酶化合物II与抗坏血酸反应的动力学研究。抗坏血酸在髓过氧化物酶功能中的作用。
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Transient and steady-state kinetics of the oxidation of substituted benzoic acid hydrazides by myeloperoxidase.髓过氧化物酶催化取代苯甲酰肼氧化反应的瞬态动力学和稳态动力学
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Mechanism of inactivation of myeloperoxidase by 4-aminobenzoic acid hydrazide.4-氨基苯甲酸酰肼使髓过氧化物酶失活的机制。
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2-thioxanthines are mechanism-based inactivators of myeloperoxidase that block oxidative stress during inflammation.2-硫代黄嘌呤是髓过氧化物酶的机制失活剂,可在炎症期间阻断氧化应激。
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Myricitrin as a substrate and inhibitor of myeloperoxidase: implications for the pharmacological effects of flavonoids.杨梅素作为髓过氧化物酶的底物和抑制剂:对黄酮类化合物药理作用的启示。
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Oxidation of cysteine by ceruloplasmin leads to formation of hydrogen peroxide, which can be utilized by myeloperoxidase.载脂蛋白的氧化作用导致氢过氧化物的形成,这可以被髓过氧化物酶利用。
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本文引用的文献

1
Myeloperoxidase: a key regulator of neutrophil oxidant production.髓过氧化物酶:中性粒细胞氧化产物生成的关键调节因子。
Redox Rep. 1997 Feb;3(1):3-15. doi: 10.1080/13510002.1997.11747085.
2
Myeloperoxidase: a front-line defender against phagocytosed microorganisms.髓过氧化物酶:吞噬微生物的一线防御者。
J Leukoc Biol. 2013 Feb;93(2):185-98. doi: 10.1189/jlb.0712349. Epub 2012 Oct 11.
3
Redox reactions and microbial killing in the neutrophil phagosome.中性粒细胞吞噬体内的氧化还原反应与微生物杀灭。
Antioxid Redox Signal. 2013 Feb 20;18(6):642-60. doi: 10.1089/ars.2012.4827. Epub 2012 Oct 9.
4
Association between the plasma proteome and serum ascorbic acid concentrations in humans.人体血浆蛋白质组与血清抗坏血酸浓度的相关性。
J Nutr Biochem. 2013 May;24(5):842-7. doi: 10.1016/j.jnutbio.2012.05.002. Epub 2012 Jul 25.
5
Myeloperoxidase and oxidative stress in rheumatoid arthritis.髓过氧化物酶与类风湿关节炎中的氧化应激。
Rheumatology (Oxford). 2012 Oct;51(10):1796-803. doi: 10.1093/rheumatology/kes193. Epub 2012 Jul 19.
6
Protective role of macrophage-derived ceruloplasmin in inflammatory bowel disease.巨噬细胞来源的铜蓝蛋白在炎症性肠病中的保护作用。
Gut. 2013 Feb;62(2):209-19. doi: 10.1136/gutjnl-2011-300694. Epub 2012 Feb 16.
7
Myeloperoxidase targets apolipoprotein A-I, the major high density lipoprotein protein, for site-specific oxidation in human atherosclerotic lesions.髓过氧化物酶使载脂蛋白 A-I(主要的高密度脂蛋白蛋白)在人动脉粥样硬化病变中发生位点特异性氧化。
J Biol Chem. 2012 Feb 24;287(9):6375-86. doi: 10.1074/jbc.M111.337345. Epub 2012 Jan 4.
8
Clinical and genetic association of serum ceruloplasmin with cardiovascular risk.血清铜蓝蛋白与心血管风险的临床和遗传关联。
Arterioscler Thromb Vasc Biol. 2012 Feb;32(2):516-22. doi: 10.1161/ATVBAHA.111.237040. Epub 2011 Nov 10.
9
2-thioxanthines are mechanism-based inactivators of myeloperoxidase that block oxidative stress during inflammation.2-硫代黄嘌呤是髓过氧化物酶的机制失活剂,可在炎症期间阻断氧化应激。
J Biol Chem. 2011 Oct 28;286(43):37578-89. doi: 10.1074/jbc.M111.266981. Epub 2011 Aug 31.
10
Pathogenesis of antineutrophil cytoplasmic autoantibody vasculitis.抗中性粒细胞胞浆自身抗体相关性血管炎的发病机制。
Curr Opin Nephrol Hypertens. 2011 May;20(3):263-70. doi: 10.1097/MNH.0b013e3283456731.

铜蓝蛋白是髓过氧化物酶的内源性抑制剂。

Ceruloplasmin is an endogenous inhibitor of myeloperoxidase.

机构信息

Centre for Free Radical Research, Department of Pathology, University of Otago, Christchurch, Christchurch 8140, New Zealand.

出版信息

J Biol Chem. 2013 Mar 1;288(9):6465-77. doi: 10.1074/jbc.M112.418970. Epub 2013 Jan 10.

DOI:10.1074/jbc.M112.418970
PMID:23306200
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3585080/
Abstract

Myeloperoxidase is a neutrophil enzyme that promotes oxidative stress in numerous inflammatory pathologies. It uses hydrogen peroxide to catalyze the production of strong oxidants including chlorine bleach and free radicals. A physiological defense against the inappropriate action of this enzyme has yet to be identified. We found that myeloperoxidase oxidized 75% of the ascorbate in plasma from ceruloplasmin knock-out mice, but there was no significant loss in plasma from wild type animals. When myeloperoxidase was added to human plasma it became bound to other proteins and was reversibly inhibited. Ceruloplasmin was the predominant protein associated with myeloperoxidase. When the purified proteins were mixed, they became strongly but reversibly associated. Ceruloplasmin was a potent inhibitor of purified myeloperoxidase, inhibiting production of hypochlorous acid by 50% at 25 nm. Ceruloplasmin rapidly reduced Compound I, the Fe(V) redox intermediate of myeloperoxidase, to Compound II, which has Fe(IV) in its heme prosthetic groups. It also prevented the fast reduction of Compound II by tyrosine. In the presence of chloride and hydrogen peroxide, ceruloplasmin converted myeloperoxidase to Compound II and slowed its conversion back to the ferric enzyme. Collectively, our results indicate that ceruloplasmin inhibits myeloperoxidase by reducing Compound I and then trapping the enzyme as inactive Compound II. We propose that ceruloplasmin should provide a protective shield against inadvertent oxidant production by myeloperoxidase during inflammation.

摘要

髓过氧化物酶是一种中性粒细胞酶,可促进许多炎症性疾病中的氧化应激。它利用过氧化氢催化产生包括氯漂白剂和自由基在内的强氧化剂。尚未发现针对这种酶不适当作用的生理防御机制。我们发现髓过氧化物酶可氧化 75%来自铜蓝蛋白敲除小鼠的血浆中的抗坏血酸,但野生型动物的血浆中无明显损失。当髓过氧化物酶添加到人血浆中时,它会与其他蛋白质结合并被可逆抑制。铜蓝蛋白是与髓过氧化物酶结合的主要蛋白质。当混合这两种纯化的蛋白质时,它们会强烈但可逆转地结合。铜蓝蛋白是纯化的髓过氧化物酶的有效抑制剂,可将次氯酸的产生抑制 50%,其抑制浓度为 25nm。铜蓝蛋白可迅速将髓过氧化物酶的 Fe(V)氧化还原中间物 Compound I 还原为 Compound II,其血红素辅基中含有 Fe(IV)。它还可以防止酪氨酸快速还原 Compound II。在有氯化物和过氧化氢存在的情况下,铜蓝蛋白将髓过氧化物酶转化为 Compound II,并减缓其向三价铁酶的转化。综上所述,我们的研究结果表明,铜蓝蛋白通过还原 Compound I 来抑制髓过氧化物酶,然后将酶捕获为无活性的 Compound II。我们提出,铜蓝蛋白在炎症期间应能为髓过氧化物酶的无意氧化产物提供防护盾。