Li Xing Jun, Fieschi Franck, Paclet Marie-Hélène, Grunwald Didier, Campion Yannick, Gaudin Philippe, Morel Françoise, Stasia Marie-José
Groupe de Recherche et d'Etude du Processus Inflammatoire, Université Joseph Fourier, Laboratoire d'Enzymologie, Centre Hospitalier Universitaire, Grenoble CHU 38043, Cedex 9, France.
J Leukoc Biol. 2007 Jan;81(1):238-49. doi: 10.1189/jlb.0905541. Epub 2006 Oct 23.
The role of Leu505 of Nox2 on the NADPH oxidase activation process was investigated. An X-CGD PLB-985 cell line expressing the Leu505Arg Nox2 mutant was obtained, exactly mimicking the phenotype of a previously published X91+-CGD case. In a reconstituted cell-free system (CFS), NADPH oxidase and iodonitrotetrazolium (INT) reductase activities were partially maintained concomitantly with a partial cytosolic factors translocation to the plasma membrane. This suggests that assembly and electron transfer from NADPH occurred partially in the Leu505Arg Nox2 mutant. Moreover, in a simplified CFS using purified mutant cytochrome b558 and recombinant p67phox, p47phox, and Rac1proteins, we found that the Km for NADPH and for NADH was about three times higher than those of purified WT cytochrome b558, indicating that the Leu505Arg mutation induces a slight decrease of the affinity for NADPH and NADH. In addition, oxidase activity can be extended by increasing the amount of p67phox in the simplified CFS assay. However, the maximal reconstituted oxidase activity using WT purified cytochrome b558 could not be reached using mutant cytochrome b558. In a three-dimensional model of the C-terminal tail of Nox2, Leu505 appears to have a strategic position just at the entry of the NADPH binding site and at the end of the alpha-helical loop (residues 484-504), a potential cytosolic factor binding region. The Leu505Arg mutation seems to affect the oxidase complex activation process through alteration of cytosolic factors binding and more particularly the p67phox interaction with cytochrome b558, thus affecting NADPH access to its binding site.
研究了Nox2的Leu505在NADPH氧化酶激活过程中的作用。获得了表达Leu505Arg Nox2突变体的X-CGD PLB-985细胞系,其精确模拟了先前发表的X91+-CGD病例的表型。在重组无细胞系统(CFS)中,NADPH氧化酶和碘硝基四氮唑(INT)还原酶活性部分得以维持,同时部分胞质因子向质膜转运。这表明NADPH的组装和电子传递在Leu505Arg Nox2突变体中部分发生。此外,在使用纯化的突变细胞色素b558和重组p67phox、p47phox及Rac1蛋白的简化CFS中,我们发现NADPH和NADH的Km值比纯化的野生型细胞色素b558高约三倍,表明Leu505Arg突变导致对NADPH和NADH的亲和力略有下降。此外,在简化的CFS测定中,通过增加p67phox的量可扩展氧化酶活性。然而,使用突变细胞色素b�58无法达到使用野生型纯化细胞色素b558时重组氧化酶的最大活性。在Nox2 C末端尾巴的三维模型中,Leu505似乎恰好位于NADPH结合位点入口以及α-螺旋环(残基484 - 504)末端的关键位置,α-螺旋环是潜在的胞质因子结合区域。Leu505Arg突变似乎通过改变胞质因子结合,尤其是p67phox与细胞色素b558的相互作用,影响氧化酶复合物的激活过程,从而影响NADPH进入其结合位点。