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p67 phox 的结构域组织,该蛋白是吞噬细胞中超氧化物产生的 NADPH 氧化酶激活所必需的。

The domain organization of p67 phox, a protein required for activation of the superoxide-producing NADPH oxidase in phagocytes.

机构信息

Department of Biochemistry, Kyushu University Graduate School of Medical Sciences, Kyushu University, Fukuoka, Japan.

出版信息

J Innate Immun. 2009;1(6):543-55. doi: 10.1159/000235656. Epub 2009 Aug 18.

Abstract

The phagocyte NADPH oxidase, crucial for innate immunity, is dormant in resting cells, but becomes activated during phagocytosis to produce superoxide, a precursor of microbicidal oxidants. In activation of the oxidase, the multidomain protein p67(phox)plays a central role: it translocates to the membrane as a ternary complex with p47(phox)and p40(phox), and interacts with the small GTPase Rac to assemble with the membrane-integrated catalytic protein gp91(phox), leading to superoxide production. Here we show, using small-angle X-ray scattering (SAXS) analysis, that p67(phox)adopts an elongated conformation when it exists not only as a monomer but also as the heterotrimer. Although p67(phox)harbors an N-terminal TPR domain for binding to Rac and a p40(phox)-interacting PB1 domain, followed by an SH3 domain that associates with p47(phox), the present model suggests that no or few apparent associations occur between the domains. The positions of the protein-interaction domains in p67(phox)contribute to activation of the phagocyte NADPH oxidase: the first SH3 domain that is located between the TPR and PB1 domains positively regulates oxidase activation only when it is present at the correct position; the PB1 domain placed at this SH3 domain position inhibits the oxidase by interacting with p40(phox).

摘要

吞噬细胞 NADPH 氧化酶对于先天免疫至关重要,在静止细胞中处于休眠状态,但在吞噬作用过程中被激活,以产生超氧阴离子,这是微生物杀伤性氧化剂的前体。在氧化酶的激活过程中,多结构域蛋白 p67(phox)发挥核心作用:它与 p47(phox)和 p40(phox)形成三元复合物转位到膜上,并与小 GTP 酶 Rac 相互作用,与整合在膜上的催化蛋白 gp91(phox)组装,导致超氧阴离子的产生。在这里,我们使用小角度 X 射线散射 (SAXS) 分析表明,p67(phox)不仅以单体形式存在,而且以三聚体形式存在时,采用细长构象。尽管 p67(phox)具有用于与 Rac 结合的 N 端 TPR 结构域和与 p40(phox)相互作用的 PB1 结构域,随后是与 p47(phox)结合的 SH3 结构域,但目前的模型表明,这些结构域之间没有或很少发生明显的相互作用。p67(phox)中蛋白相互作用结构域的位置有助于吞噬细胞 NADPH 氧化酶的激活:位于 TPR 和 PB1 结构域之间的第一个 SH3 结构域仅在其处于正确位置时才对氧化酶激活具有正向调节作用;位于该 SH3 结构域位置的 PB1 结构域通过与 p40(phox)相互作用抑制氧化酶。

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