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在无细胞体系中马多形核白细胞的NADPH氧化酶的激活

Activation of a NADPH oxidase from horse polymorphonuclear leukocytes in a cell-free system.

作者信息

Heyneman R A, Vercauteren R E

出版信息

J Leukoc Biol. 1984 Dec;36(6):751-9. doi: 10.1002/jlb.36.6.751.

Abstract

A postnuclear cell fraction from resting horse polymorphonuclear (PMN) leukocytes incubated with fatty acid-salt ions such as oleate or linoleate generated a NADPH-dependent oxygen consumption and superoxide production. Oxidative activity was negligible or absent in the postnuclear fraction from mononuclear leukocytes, p-chloromercuribenzene sulfonic acid-treated granulocytes, and granulocytes from a patient with chronic granulomatous disease. Although consistently associated with the membrane fraction from resting PMN leukocytes, the superoxide-generating activity was shown to be dependent on a thus far unknown cytosolic constituent. The apparent Km's for NADPH and NADH (66 and 1,600 microM, respectively), the pH optimum for the reaction (7.0), the cyanide insensitivity, and transient nature of the reaction together with the stoichiometric relationship between oxygen uptake and NADPH oxidation led to the conclusion that in the presence of cytosol a cell-free latent respiratory burst oxidase can be converted into an active enzyme by interaction with oleate micelles.

摘要

来自静息马多形核(PMN)白细胞的核后细胞组分与脂肪酸盐离子(如油酸酯或亚油酸酯)一起孵育时,会产生NADPH依赖性的氧消耗和超氧化物生成。单核白细胞、对氯汞苯磺酸处理的粒细胞以及慢性肉芽肿病患者的粒细胞的核后组分中的氧化活性可忽略不计或不存在。尽管超氧化物生成活性始终与静息PMN白细胞的膜组分相关,但已证明其依赖于一种迄今未知的胞质成分。NADPH和NADH的表观Km值(分别为66和1600μM)、反应的最适pH值(7.0)、对氰化物不敏感以及反应的短暂性质,再加上氧摄取与NADPH氧化之间的化学计量关系,得出结论:在存在胞质溶胶的情况下,无细胞的潜在呼吸爆发氧化酶可通过与油酸酯微团相互作用转化为活性酶。

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