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蛋白质-磷脂相互作用在鸟嘌呤核苷酸交换因子Arno激活ARF1中的作用

Role of protein-phospholipid interactions in the activation of ARF1 by the guanine nucleotide exchange factor Arno.

作者信息

Paris S, Béraud-Dufour S, Robineau S, Bigay J, Antonny B, Chabre M, Chardin P

机构信息

CNRS, Institut de Pharmacologie Moléculaire et Cellulaire, 660 route des Lucioles, Sophia Antipolis, 06560 Valbonne, France.

出版信息

J Biol Chem. 1997 Aug 29;272(35):22221-6. doi: 10.1074/jbc.272.35.22221.

Abstract

Arno is a 47-kDa human protein recently identified as a guanine nucleotide exchange factor for ADP ribosylation factor 1 (ARF1) with a central Sec7 domain responsible for the exchange activity and a carboxyl-terminal pleckstrin homology (PH) domain (Chardin, P., Paris, S., Antonny, B., Robineau, S., Béraud-Dufour, S., Jackson, C. L., and Chabre, M. (1996) Nature 384, 481-484). Binding of the PH domain to phosphatidylinositol 4,5-bisphosphate (PIP2) greatly enhances Arno-mediated activation of myristoylated ARF1. We show here that in the absence of phospholipids, Arno promotes nucleotide exchange on [Delta17]ARF1, a soluble mutant of ARF1 lacking the first 17 amino acids. This reaction is unaffected by PIP2, which suggests that the PIP2-PH domain interaction does not directly regulate the catalytic activity of Arno but rather serves to recruit Arno to membranes. Arno catalyzes the release of GDP more efficiently than that of GTP from [Delta17]ARF1, and a stable complex between Arno Sec7 domain and nucleotide-free [Delta17]ARF1 can be isolated. In contrast to [Delta17]ARF1, full-length unmyristoylated ARF1 is not readily activated by Arno in solution. Its activation requires the presence of phospholipids and a reduction of ionic strength and Mg2+ concentration. PIP2 is strongly stimulatory, indicating that binding of Arno to phospholipids is involved, but in addition, electrostatic interactions between phospholipids and the amino-terminal portion of unmyristoylated ARF1GDP seem to be important. We conclude that efficient activation of full-length ARF1 by Arno requires a membrane surface and two distinct protein-phospholipid interactions: one between the PH domain of Arno and PIP2, and the other between amino-terminal cationic residues of ARF1 and anionic phospholipids. The latter interaction is normally induced by insertion of the amino-terminal myristate into the bilayer but can also be artificially facilitated by decreasing Mg2+ and salt concentrations.

摘要

阿诺是一种47 kDa的人类蛋白质,最近被鉴定为ADP核糖基化因子1(ARF1)的鸟嘌呤核苷酸交换因子,其中心Sec7结构域负责交换活性,羧基末端为普列克底物蛋白同源(PH)结构域(沙尔丹,P.,帕里斯,S.,安东尼,B.,罗比诺,S.,贝劳 - 迪富尔,S.,杰克逊,C.L.,和沙布尔,M.(1996年)《自然》384,481 - 484)。PH结构域与磷脂酰肌醇4,5 - 二磷酸(PIP2)的结合极大地增强了阿诺介导的肉豆蔻酰化ARF1的激活。我们在此表明,在没有磷脂的情况下,阿诺促进了[Δ17]ARF1(ARF1的一种可溶性突变体,缺少前17个氨基酸)上的核苷酸交换。此反应不受PIP2影响,这表明PIP2 - PH结构域相互作用并不直接调节阿诺的催化活性,而是用于将阿诺招募到膜上。阿诺从[Δ17]ARF1催化释放GDP比释放GTP更有效,并且可以分离出阿诺Sec7结构域与无核苷酸的[Δ17]ARF1之间的稳定复合物。与[Δ17]ARF1不同,全长未肉豆蔻酰化的ARF1在溶液中不容易被阿诺激活。其激活需要磷脂的存在以及离子强度和Mg2 +浓度的降低。PIP2具有强烈的刺激作用,表明阿诺与磷脂的结合参与其中,但此外,磷脂与未肉豆蔻酰化的ARF1GDP氨基末端部分之间的静电相互作用似乎也很重要。我们得出结论,阿诺对全长ARF1的有效激活需要膜表面和两种不同的蛋白质 - 磷脂相互作用:一种是阿诺的PH结构域与PIP2之间的相互作用,另一种是ARF1的氨基末端阳离子残基与阴离子磷脂之间的相互作用。后一种相互作用通常由氨基末端肉豆蔻酸插入双层膜诱导,但也可以通过降低Mg2 +和盐浓度人为促进。

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