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布雷菲德菌素A在小G蛋白ADP核糖基化因子1(ARF1)与核苷酸交换因子Sec7结构域之间界面处的结合位点。

Binding site of brefeldin A at the interface between the small G protein ADP-ribosylation factor 1 (ARF1) and the nucleotide-exchange factor Sec7 domain.

作者信息

Robineau S, Chabre M, Antonny B

机构信息

Centre National de la Recherche Scientifique, Institut de Pharmacologie Moléculaire et Cellulaire, 660 route des lucioles, 06560 Valbonne, France.

出版信息

Proc Natl Acad Sci U S A. 2000 Aug 29;97(18):9913-8. doi: 10.1073/pnas.170290597.

Abstract

Sec7 domains (Sec7d) catalyze the exchange of guanine nucleotide on ARFs. Recent studies indicated that brefeldin A (BFA) inhibits Sec7d-catalyzed nucleotide exchange on ARF1 in an uncompetitive manner by trapping an early intermediate of the reaction: a complex between GDP-bound ARF1 and Sec7d. Using (3)H-labeled BFA, we show that BFA binds to neither isolated Sec7d nor isolated ARF1-GDP, but binds to the transitory Sec7d-ARF1-GDP complex and stabilizes it. Two pairs of residues at positions 190-191 and 198-208 (Arno numbering) in Sec7d contribute equally to the stability of BFA binding, which is also sensitive to mutation of H80 in ARF1. The catalytic glutamic (E156) residue of Sec7d is not necessary for BFA binding. In contrast, BFA does not bind to the intermediate catalytic complex between nucleotide-free ARF1 and Sec7d. These results suggest that, on initial docking steps between ARF1-GDP and Sec7d, BFA inserts like a wedge between the switch II region of ARF1-GDP and a surface encompassing residues 190-208, at the border of the characteristic hydrophobic groove of Sec7d. Bound BFA would prevent the switch regions of ARF1-GDP from reorganizing and forming tighter contacts with Sec7d and thereby would maintain the bound GDP of ARF1 at a distance from the catalytic glutamic finger of Sec7d.

摘要

Sec7结构域(Sec7d)催化ARF上鸟嘌呤核苷酸的交换。最近的研究表明,布雷菲德菌素A(BFA)以非竞争性方式抑制Sec7d催化的ARF1核苷酸交换,其机制是捕获反应的早期中间体:GDP结合的ARF1与Sec7d之间的复合物。使用³H标记的BFA,我们发现BFA既不与分离的Sec7d结合,也不与分离的ARF1-GDP结合,但能与短暂形成的Sec7d-ARF1-GDP复合物结合并使其稳定。Sec7d中第190-191位和198-208位(按照Arno编号)的两对残基对BFA结合稳定性的贡献相同,且该结合对ARF1中H80的突变也敏感。Sec7d的催化性谷氨酸(E156)残基对于BFA结合并非必需。相反,BFA不与无核苷酸的ARF1和Sec7d之间的中间催化复合物结合。这些结果表明,在ARF1-GDP与Sec7d的初始对接步骤中,BFA像楔子一样插入到ARF1-GDP的开关II区域与Sec7d特征性疏水凹槽边界处包含第190-208位残基的表面之间。结合的BFA会阻止ARF1-GDP的开关区域重新组织并与Sec7d形成更紧密的接触,从而使ARF1结合的GDP与Sec7d的催化性谷氨酸指保持一定距离。

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