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首页> 外文期刊>The Biochemical Journal >Properties of phagocyte NADPH oxidase p47-phox mutants with unmasked SH3 (Src homology 3) domains: full reconstitution of oxidase activity in a semi-recombinant cell-free system lacking arachidonic acid
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Properties of phagocyte NADPH oxidase p47-phox mutants with unmasked SH3 (Src homology 3) domains: full reconstitution of oxidase activity in a semi-recombinant cell-free system lacking arachidonic acid

机译:具有未被掩盖的SH3(Src同源性3)域的吞噬细胞NADPH氧化酶p47-phox突变体的特性:在缺乏花生四烯酸的半重组无细胞系统中氧化酶活性的完全重建

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摘要

In an early step in the assembly of the phagocyte NADPH oxidase, p47-phox translocates from the cytosol to the membrane, mediated by engagement of the N-termini of two p47-phox Src homology 3 (SH3) domains with a proline-rich region (PRR) in the p22-phox subunit of cytochrome b(558). In response to phagocyte activation, several serine residues in a C-terminal arginine/lysine-rich domain of p47-phox are phosphorylated, leading to changes in the conformation of p47-phox and exposure of its N-terminal SH3 domain that is normally masked by internal association with the arginine/lysine-rich domain. We report that triple alanine substitutions at Asp-217, Glu-218 and Glu-223 in a short sequence that links the tandem p47-phox SH3 domains unmasked the N-terminal SH3 domain, similar to the effects of aspartic acid substitutions at Ser-310 and Ser-328 in the arginine/lysine-rich region. Recombinant p47-phox proteins with mutations in either the linker region or the arginine/lysine-rich domain were active in the absence of arachidonic acid stimulation in a cell-free NADPH oxidase system consisting of recombinant p67-phox, Rac1-guanosine 5'-[gamma-thio]triphosphate and neutrophil membranes. Supplementing neutrophil membranes with phosphoinositides or other negatively charged phospholipids markedly enhanced cell-free superoxide generation by these p47-phox mutants in the absence of arachidonic acid, to levels equivalent to those generated by wild-type p47-phox following arachidonic acid activation. This enhancement may be related to recruitment to the membrane of p47-phox mediated by a novel secondary phox homology (PX) domain binding site that broadly recognizes phospholipids. No specific enhancement by specific phosphorylated phosphatidylinositols was found to suggest a dominant role for the p47-phox primary PX domain binding site. Truncated p47-phox S310D S328D lacking the C-terminal PRR was inactive in the cell-free system without arachidonic acid, but was fully active with arachidonic acid. This suggests that activation of NADPH oxidase in an arachidonate-free cell-free system requires association of the p47-phox C-terminal PRR with the p67-phox C-terminal SH3 domain. [References: 31]
机译:在吞噬细胞NADPH氧化酶组装的早期步骤中,p47-phox从胞质溶胶转移到膜,这是通过两个p47-phox Src同源性3(SH3)域的N末端与富含脯氨酸的区域的结合介导的(PRR)在细胞色素b(558)的p22-phox亚基中。响应吞噬细胞激活,p47-phox的C端精氨酸/赖氨酸丰富的结构域中的多个丝氨酸残基被磷酸化,导致p47-phox构象的改变和其N端SH3结构域的暴露(通常被掩盖)通过与富含精氨酸/赖氨酸的域的内部关联。我们报告说,在连接串联p47-phox SH3域的短序列中,Asp-217,Glu-218和Glu-223的三倍丙氨酸取代未掩盖N末端SH3域,类似于在Ser-处的天冬氨酸取代的影响富含精氨酸/赖氨酸的区域中的310和Ser-328。在无花生四烯酸刺激的无重组NADPH氧化酶系统中,重组p47-phox蛋白在接头区域或富含精氨酸/赖氨酸的结构域中均具有活性,该系统由重组p67-phox,Rac1-鸟苷5'-组成γ-硫代三磷酸和中性粒细胞膜。在不存在花生四烯酸的情况下,向这些嗜中性白细胞膜补充磷脂酰肌醇或其他带负电荷的磷脂可显着增强这些p47-phox突变体产生的无细胞超氧化物,其水平相当于野生型p47-phox在花生四烯酸活化后产生的水平。这种增强可能与通过广泛识别磷脂的新型次生phox同源性(PX)域结合位点介导的p47-phox膜的募集有关。没有发现特定的磷酸化磷脂酰肌醇的特异性增强表明p47-phox初级PX域结合位点起着主导作用。缺少C末端PRR的截短的p47-phox S310D S328D在无花生四烯酸的无细胞系统中没有活性,但对花生四烯酸具有完全活性。这表明在无花生四烯酸酯的无细胞系统中激活NADPH氧化酶需要将p47-phox C末端PRR与p67-phox C末端SH3域结合。 [参考:31]

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