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Structural Basis of Membrane Targeting by NADPH Oxidase

Structural Basis of Membrane Targeting by NADPH Oxidase
NADPH 氧化酶膜靶向的结构基础
批准号:
7012230
负责人:
DAVID A HORITA
金额:
$35.03万
依托单位国家:
美国
项目类别:
财政年份:
2005
资助国家:
美国
项目状态:
已结题
起止时间:
2005-02-01 至 2010-01-31

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中文摘要
翻译
描述(由申请人提供):吞噬NADPH氧化酶(Phox)对于产生具有杀微生物活性的活性氧至关重要。最近,非吞噬性NADPH氧化酶(Nox)异构体已被确定产生在信号转导中起作用的活性氧。这两种异构体都被脂质第二信使激活,如磷脂酰肌醇和磷脂酸,它们将氧化酶的胞质成分招募到膜上。本项目的目的是确定外周膜蛋白p47phox、p40phox和p47phox同源物NOXO1识别这些激活脂质的结构基础。本提案由一名对免疫细胞信号传导感兴趣的结构生物学家与一名在生物活性脂质的Phox调节的功能分析方面有着广泛记录的共同研究者组成。
英文摘要
DESCRIPTION (provided by applicant): Phagocytic NADPH oxidase (Phox) is critically important for generating reactive oxygen species with microbicidal activity. Recently, nonphagocytic NADPH oxidase (Nox) isoforms have been identified which generate reactive oxygen species that function in signal transduction. Both isoforms are activated by lipid second messengers such as phosphatidylinositols and phosphatidic acid which recruit cytosolic components of the oxidase to the membrane. The goal of this project is to determine the structural basis for recognition of these activating lipids by the peripheral membrane proteins p47phox, p40phox, and the p47phox homolog NOXO1. This proposal teams a structural biologist with an interest in immune cell signaling with a coinvestigator with an extensive track record of functional analysis of Phox regulation by bioactive lipids. Aim 1 is to determine the structural basis of lipid recognition by the PX domains of p47phox, p40phox, and NOXO1. While crystal structures indicate the basis for soluble lipid head group interactions, information regarding the interfaces required for interaction with a lipid surface is lacking. Our preliminary data demonstrate that isotropic, phospholipid "bicelles" are a suitable membrane mimetic that will allow high-resolution, solution-state NMR structure determination of phospholipid bilayer-bound protein. Aim 2 tests the hypothesis that intramolecular associations within p47phox and NOXO1 regulate lipid binding by these proteins. Preliminary data show that phosphatidic acid binds to the polybasic region of p47phox, which is lacking in NOXO1. In addition, binding of phosphoinositides to the full-length protein is less effective than binding to the isolated PX domain. Both the polybasic region and the PX domain appear to interact with the SH3 domains, raising the possibility that binding of lipids and/or other modifications (e.g. phosphorylation of the polybasic region) alters the conformation of the proteins to allow more effective interaction with lipids and proteins in the membrane. These experiments will provide key insights into how oxidase activity is regulated and the differences in regulation and activation of phagocytic vs. nonphagocytic forms of the oxidase.
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Structural Basis of Membrane Targeting by NADPH Oxidase
Structural Basis of Membrane Targeting by NADPH Oxidase
Structural Basis of Membrane Targeting by NADPH Oxidase
Structural Basis of Membrane Targeting by NADPH Oxidase
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