首页> 外文期刊>Free radical research >Inactivation of myocardial dihydrolipoamide dehydrogenase by myeloperoxidase systems: effect of halides, nitrite and thiol compounds.
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Inactivation of myocardial dihydrolipoamide dehydrogenase by myeloperoxidase systems: effect of halides, nitrite and thiol compounds.

机译:髓过氧化物酶系统可灭活心肌二氢脂酰胺脱氢酶:卤化物,亚硝酸盐和硫醇化合物的作用。

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摘要

Dihydrolipoamide dehydrogenase (LADH) lipoamide reductase activity decreased whereas enzyme diaphorase activity increased after LADH treatment with myeloperoxidase (MPO) dependent systems (MPO/H2O2/halide, MPO/NADH/halide and MPO/H2O2itrite systems. LADH inactivation was a function of the composition of the inactivating system and the incubation time. Chloride, iodide, bromide, and the thiocyanate anions were effective complements of the MPO/H2O2 system. NaOCl inactivated LADH, thus supporting hypochlorous acid (HOCl) as putative agent of the MPO/H2O2/NaCl system. NaOCl and the MPO/H2O2/NaCl system oxidized LADH thiols and NaOCl also oxidized LADH methionine and tyrosine residues. LADH inactivation by the MPO/NADH/halide systems was prevented by catalase and enhanced by superoxide dismutase, in close agreement with H2O2 production by the LADH/NADH system. Similar effects were obtained with lactoperoxidase and horse-radish peroxidase supplemented systems. L-cysteine, N-acetylcysteine, penicillamine, N-(2-mercaptopropionylglycine), Captopril and taurine protected LADH against MPO systems and NaOCl. The effect of the MPO/H2O2/NaNO2 system was prevented by MPO inhibitors (sodium azide, isoniazid, salicylhydroxamic acid) and also by L-cysteine, L-methionine, L-tryptophan, L-tyrosine, L-histidine and reduced glutathione. The summarized observations support the hypothesis that peroxidase-generated "reactive species" oxidize essential thiol groups at LADH catalytic site.
机译:用依赖于髓过氧化物酶(MPO)的系统(MPO / H2O2 /卤化物,MPO / NADH /卤化物和MPO / H2O2 /亚硝酸盐系统)进行LADH处理后,二氢脂酰胺脱氢酶(LADH)的脂酰胺还原酶活性降低,而酶黄递酶的活性增加。灭活系统的组成和孵育时间氯化物,碘化物,溴化物和硫氰酸根阴离子是MPO / H2O2系统的有效补充NaOCl灭活了LADH,从而支持了次氯酸(HOCl)作为MPO / H2O2的推定剂/ NaCl系统NaOCl和MPO / H2O2 / NaCl系统氧化LADH硫醇,NaOCl也氧化LADH蛋氨酸和酪氨酸残基过氧化氢酶可防止MPO / NADH /卤化物系统使LADH失活,与超氧化物歧化酶密切相关通过LADH / NADH系统产生H2O2,补充乳过氧化物酶和辣根过氧化物酶的系统也获得了类似的效果,其中L-半胱氨酸,N-乙酰半胱氨酸,青霉胺,N-(2-巯基丙酰甘氨酸),卡托普利和牛磺酸可保护LADH免受MPO系统和NaOCl的侵害。 MPO抑制剂(叠氮化钠,异烟肼,水杨基异羟肟酸)以及L-半胱氨酸,L-蛋氨酸,L-色氨酸,L-酪氨酸,L-组氨酸和还原型谷胱甘肽可防止MPO / H2O2 / NaNO2系统的作用。总结的观察结果支持以下假设:过氧化物酶生成的“反应性物种”会在LADH催化位点氧化必不可少的巯基。

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