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控制大鼠氧化爆发反应和关节炎严重程度的 Ncf1 基因中多态性数量性状核苷酸的定位。

Positioning of a polymorphic quantitative trait nucleotide in the Ncf1 gene controlling oxidative burst response and arthritis severity in rats.

机构信息

Medical Inflammation Research, C12 BMC, Lund University, Lund, Sweden.

出版信息

Antioxid Redox Signal. 2011 Jun 15;14(12):2373-83. doi: 10.1089/ars.2010.3440. Epub 2011 Mar 31.

Abstract

The Ncf1 gene, encoding the P47(PHOX) protein that regulates production of reactive oxygen species (ROS) by the phagocyte NADPH oxidase (NOX2) complex, is associated with autoimmunity and arthritis severity in rats. We have now identified that the single-nucleotide polymorphism (SNP) resulting in an M153T amino acid substitution mediates arthritis resistance and thus explains the molecular polymorphism underlying the earlier identified Ncf1 gene effect. We identified the SNP in position 153 to regulate ROS production using COS(PHOX) cells transfected with mutated Ncf1. To determine the role of this SNP for control of arthritis, we used the Wistar strain, identified to carry only the postulated arthritis resistant SNP in position 153. When this Ncf1 allele was backcrossed to the arthritis susceptible DA strain, both granulocyte ROS production and arthritis resistance were restored. Position 153 is located in the hinge region between the PX and SH3 domains of P47(PHOX). Mutational analysis of this position revealed a need for an -OH group in the side chain but we found no evidence for phosphorylation. The polymorphism did not affect assembly of the P47(PHOX)/P67(PHOX) complex in the cytosol or membrane localization, but is likely to operate downstream of assembly, affecting activity of the membrane NOX2 complex.

摘要

Ncf1 基因编码 P47(PHOX)蛋白,该蛋白调节吞噬细胞 NADPH 氧化酶 (NOX2)复合物产生活性氧物种 (ROS)。Ncf1 基因与大鼠自身免疫和关节炎严重程度有关。我们现在已经确定,导致 M153T 氨基酸取代的单核苷酸多态性 (SNP)介导关节炎抗性,从而解释了先前确定的 Ncf1 基因效应所基于的分子多态性。我们使用转染了突变 Ncf1 的 COS(PHOX)细胞鉴定了位置 153 的 SNP 来调节 ROS 的产生。为了确定该 SNP 对关节炎控制的作用,我们使用了 Wistar 品系,该品系仅携带假定的位置 153 的关节炎抗性 SNP。当这个 Ncf1 等位基因回交至关节炎易感的 DA 品系时,粒细胞 ROS 产生和关节炎抗性都得到了恢复。位置 153 位于 P47(PHOX)的 PX 和 SH3 结构域之间的铰链区。该位置的突变分析表明侧链需要 -OH 基团,但我们没有发现磷酸化的证据。该多态性不影响 P47(PHOX)/P67(PHOX)复合物在细胞质中的组装或膜定位,但可能在组装的下游起作用,影响膜 NOX2 复合物的活性。

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