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Ethylene formation by polymorphonuclear leukocytes. Role of myeloperoxidase

机译:乙烯由多形核白细胞形成。髓过氧化物酶的作用

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摘要

Ethylene formation from the thioethers, beta-methylthiopropionaldehyde (methional) and 2-keto-4-thiomethylbutyric acid by phagocytosing polymorphonuclear leukocytes (PMNs) was found to be largely dependent on myeloperoxidase (MPO). Conversion was less than 10% of normal when MPO-deficient PMNs were employed; formation by normal PMNs was inhibited by the peroxidase inhibitors, azide, and cyanide, and a model system consisting of MPO, H2O2, chloride (or bromide) and EDTA was found which shared many of the properties of the predominant PMN system. MPO-independent mechanisms of ethylene formation were also identified. Ethylene formation from methional by phagocytosing eosinophils and by H2O2 in the presence or absence of catalase was stimulated by azide. The presence of MPO-independent, azide-stimulable systems in the PMN preparations was suggested by the azide stimulation of ethylene formation from methional when MPO-deficient leukocytes were employed. Ethylene formation by dye-sensitized photooxidation was also demonstrated and evidence obtained for the involvement of singlet oxygen (1O2). These findings are discussed in relation to the participation of H2O2, hydroxyl radicals, the superoxide anion and 1O2 in the formation of ethylene by PMNs and by the MPO model system.
机译:发现通过吞噬多形核白细胞(PMN)由硫醚,β-甲基硫代丙醛(甲基)和2-酮-4-硫代甲基丁酸形成的乙烯很大程度上依赖于髓过氧化物酶(MPO)。当使用MPO不足的PMN时,转化率不到正常值的10%;正常PMN的形成受到过氧化物酶抑制剂,叠氮化物和氰化物的抑制,并且发现了由MPO,H2O2,氯化物(或溴化物)和EDTA组成的模型系统,它们具有主要PMN系统的许多特性。还确定了不依赖MPO的乙烯形成机理。叠氮化物刺激通过吞噬嗜酸性粒细胞和过氧化氢在有无过氧化氢酶的作用下从甲硫氨酸形成乙烯。当使用MPO缺陷的白细胞时,叠氮化物刺激甲基甲硫氨酸引起的乙烯形成,表明在PMN制剂中存在MPO独立的,叠氮化物可刺激的系统。还证明了通过染料敏化的光氧化作用形成乙烯,并获得了有关单线态氧(1O2)的证据。讨论了这些发现与PMN和MPO模型系统中H2O2,羟基自由基,超氧阴离子和1O2在乙烯形成中的参与有关。

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