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在人类中性粒细胞激活过程中,NADPH氧化酶在特定颗粒中进行功能组装。

NADPH oxidase is functionally assembled in specific granules during activation of human neutrophils.

作者信息

Vaissiere C, Le Cabec V, Maridonneau-Parini I

机构信息

Institut de Pharmacologie et de Biologie Structurale, CNRS UPR 9062, Toulouse, France.

出版信息

J Leukoc Biol. 1999 May;65(5):629-34. doi: 10.1002/jlb.65.5.629.

Abstract

In addition to the extracellular production of O2- by NADPH oxidase in neutrophils stimulated by soluble stimuli, the intracellular formation of oxygen reactive species has been described. Cytochrome b559, the redox component of the NADPH oxidase complex, is mainly associated with specific granule membrane in resting neutrophils. We examined whether these granules could be a site for intracellular production of O2-. Phorbol myristate acetate (PMA)-stimulated neutrophils were fractionated by differential centrifugation, and generation of O2- was detected in both the granule and the plasma membrane-enriched fractions, but more in the granules. Translocation of p47phox and p67phox, two cytosolic components of the NADPH oxidase, was also quantitatively more important in the granules than in the plasma membrane fraction. After separation of the specific from the azurophil granules, p47phox and p67phox were found to be present only in the specific granules of PMA-activated cells. As a control, the production of O2- was studied in retinoic acid-differentiated NB4 cells that lack specific granules. During stimulation of NB4 cells with PMA, only the plasma membrane-enriched fraction was the site of O2- production. Together, these results indicate that NADPH oxidase can be functionally assembled in specific granules.

摘要

除了在可溶性刺激物刺激下中性粒细胞中NADPH氧化酶在细胞外产生超氧阴离子(O₂⁻)外,还描述了氧反应性物种的细胞内形成。细胞色素b559是NADPH氧化酶复合物的氧化还原成分,主要与静息中性粒细胞中的特定颗粒膜相关。我们研究了这些颗粒是否可能是细胞内产生O₂⁻的场所。用佛波醇肉豆蔻酸酯乙酸酯(PMA)刺激的中性粒细胞通过差速离心进行分级分离,在颗粒和富含质膜的级分中均检测到O₂⁻的产生,但颗粒中的更多。NADPH氧化酶的两个胞质成分p47phox和p67phox的转位在颗粒中也比在质膜级分中在数量上更重要。在将特异性颗粒与嗜天青颗粒分离后,发现p47phox和p,67phox仅存在于PMA激活细胞的特异性颗粒中。作为对照,在缺乏特异性颗粒的视黄酸分化的NB4细胞中研究了O₂⁻的产生。在用PMA刺激NB4细胞的过程中,只有富含质膜的级分是O₂⁻产生的场所。总之这些结果表明,NADPH氧化酶可以在特异性颗粒中进行功能组装。

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