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二酰胺引发中性粒细胞增强超氧阴离子的释放:与细胞蛋白的S-硫醇化的关系。

Diamide primes neutrophils for enhanced release of superoxide anion: relationship to S-thiolation of cellular proteins.

作者信息

Moriguchi T, Seres T, Ravichandran V, Sasada M, Johnston R B

机构信息

The Children's Hospital of Philadelphia, Pennsylvania, USA.

出版信息

J Leukoc Biol. 1996 Aug;60(2):191-8. doi: 10.1002/jlb.60.2.191.

Abstract

Stimulation of the respiratory burst in phagocytes induces the formation of mixed disulfides between sulfhydryl groups of proteins and low-molecular-weight thiols. We hypothesized that this process (S-thiolation) might be involved in turning off the respiratory burst. However, induction of S-thiolation by pretreatment of neutrophils with diamide, a direct thiol oxidizing agent, actually primed the cells for a two- to fivefold increase in total release and fourfold increase in rate of release of 02- on stimulation by f-Met-Leu-Phe. Generation of intracellular oxidants (hydroethidine fluorescence) was increased ninefold. Priming and S-thiolation were apparent at 1 min of incubation and peaked at 5-10 min. Diamide pretreatment also reduced the lag time between addition of phorbol diester and release of 02- by a mean of 23 s (41%). Dithioerythritol, a sulfhydryl-reducing agent, abolished both the S-thiolation and priming mediated by diamide. H202 also induced priming and S-thiolation; and these were eliminated by dithioerythritol. In contrast to the effect of endotoxin, diamide priming did not affect Ca2+ homeostasis of the neutrophils. Diamide did not significantly alter NADPH oxidase activity in a cell-free system. These findings suggest that sulfhydryl groups on one or more proteins play an important role in modulating the respiratory burst.

摘要

吞噬细胞中呼吸爆发的刺激会诱导蛋白质的巯基与低分子量硫醇之间形成混合二硫化物。我们推测这个过程(S-硫醇化)可能参与关闭呼吸爆发。然而,用直接的硫醇氧化剂二酰胺预处理中性粒细胞诱导S-硫醇化,实际上使细胞在受到f-Met-Leu-Phe刺激时总释放量增加两到五倍,O₂⁻释放速率增加四倍。细胞内氧化剂(氢乙锭荧光)的生成增加了九倍。预处理1分钟时引发和S-硫醇化明显,5-10分钟时达到峰值。二酰胺预处理还使佛波酯添加与O₂⁻释放之间的延迟时间平均缩短了23秒(41%)。巯基还原剂二硫苏糖醇消除了二酰胺介导的S-硫醇化和引发。H₂O₂也诱导引发和S-硫醇化;并且这些都被二硫苏糖醇消除。与内毒素的作用相反,二酰胺引发不影响中性粒细胞的Ca²⁺稳态。二酰胺在无细胞系统中不会显著改变NADPH氧化酶活性。这些发现表明一种或多种蛋白质上的巯基在调节呼吸爆发中起重要作用。

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