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S100A8/A9蛋白作为中性粒细胞中NADPH氧化酶激活的胞质因子的伴侣。

The S100A8/A9 protein as a partner for the cytosolic factors of NADPH oxidase activation in neutrophils.

作者信息

Doussiere Jacques, Bouzidi Farid, Vignais Pierre V

机构信息

Laboratoire de Biochimie et Biophysique des Systèmes Intégrés (UMR 5092 CEA-CNRS-UJF), Département Réponse et Dynamique Cellulaires, CEA-Grenoble, 17 rue des Martyrs, 38054 Grenoble cedex 9, France.

出版信息

Eur J Biochem. 2002 Jul;269(13):3246-55. doi: 10.1046/j.1432-1033.2002.03002.x.

Abstract

In a previous study, the S100A8/A9 protein, a Ca2+- and arachidonic acid-binding protein, abundant in neutrophil cytosol, was found to potentiate the activation of the redox component of the O2- generating oxidase in neutrophils, namely the membrane-bound flavocytochrome b, by the cytosolic phox proteins p67phox, p47phox and Rac (Doussière J., Bouzidi F. and Vignais P.V. (2001) Biochem. Biophys. Res. Commun.285, 1317-1320). This led us to check by immunoprecipitation and protein fractionation whether the cytosolic phox proteins could bind to S100A8/A9. Following incubation of a cytosolic extract from nonactivated bovine neutrophil with protein A-Sepharose bound to anti-p67phox antibodies, the recovered immunoprecipitate contained the S100 protein, p47phox and p67phox. Cytosolic protein fractionation comprised two successive chromatographic steps on hydroxyapatite and DEAE cellulose, followed by isoelectric focusing. The S100A8/A9 heterodimeric protein comigrated with the cytosolic phox proteins, and more particularly with p67phox and Rac2, whereas the isolated S100A8 protein displayed a tendancy to bind to p47phox. Using a semirecombinant cell-free system of oxidase activation consisting of recombinant p67phox, p47phox and Rac2, neutrophil membranes and arachidonic acid, we found that the S100A8/A9-dependent increase in the elicited oxidase activity corresponded to an increase in the turnover of the membrane-bound flavocytochrome b, but not to a change of affinity for NADPH or O2. In the absence of S100A8/A9, oxidase activation departed from michaelian kinetics above a critical threshold concentration of cytosolic phox proteins. Addition of S100A8/A9 to the cell-free system rendered the kinetics fully michaelian. The propensity of S100A8/A9 to bind the cytosolic phox proteins, and the effects of S100A8/A9 on the kinetics of oxidase activation, suggest that S100A8/A9 might be a scaffold protein for the cytosolic phox proteins or might help to deliver arachidonic acid to the oxidase, thus favoring the productive interaction of the cytosolic phox proteins with the membrane-bound flavocytochrome b.

摘要

在之前的一项研究中,发现S100A8/A9蛋白是一种在中性粒细胞胞质溶胶中大量存在的钙和花生四烯酸结合蛋白,它能增强中性粒细胞中产生超氧阴离子的氧化酶的氧化还原成分(即膜结合黄素细胞色素b)被胞质溶胶中的phox蛋白p67phox、p47phox和Rac激活的过程(杜西埃 J.、布齐迪 F. 和维尼亚斯 P.V.(2001年)《生物化学与生物物理研究通讯》285卷,1317 - 1320页)。这促使我们通过免疫沉淀和蛋白质分级分离来检查胞质溶胶中的phox蛋白是否能与S100A8/A9结合。用与抗p67phox抗体结合的蛋白A - 琼脂糖凝胶孵育未激活的牛中性粒细胞的胞质溶胶提取物后,回收的免疫沉淀物中含有S100蛋白、p47phox和p67phox。胞质溶胶蛋白质分级分离包括在羟基磷灰石和二乙氨基乙基纤维素上进行的两个连续色谱步骤,随后进行等电聚焦。S100A8/A9异二聚体蛋白与胞质溶胶中的phox蛋白一起迁移,更具体地说是与p67phox和Rac2一起,而分离出的S100A8蛋白显示出与p47phox结合的倾向。使用由重组p67phox、p47phox和Rac2、中性粒细胞膜和花生四烯酸组成的氧化酶激活的半重组无细胞系统,我们发现S100A8/A9依赖的诱导氧化酶活性增加对应于膜结合黄素细胞色素b周转的增加,但不对应于对NADPH或O2亲和力的变化。在没有S100A8/A9的情况下,高于胞质溶胶phox蛋白的临界阈值浓度时,氧化酶激活偏离米氏动力学。向无细胞系统中添加S100A8/A9使动力学完全符合米氏动力学。S100A8/A9与胞质溶胶phox蛋白结合的倾向以及S100A8/A9对氧化酶激活动力学的影响表明,S100A8/A9可能是胞质溶胶phox蛋白的支架蛋白,或者可能有助于将花生四烯酸递送至氧化酶,从而有利于胞质溶胶phox蛋白与膜结合黄素细胞色素b的有效相互作用。

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