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从转导素α-GDP-AIF-4的1.7埃晶体结构看G蛋白的GTP酶机制

GTPase mechanism of Gproteins from the 1.7-A crystal structure of transducin alpha-GDP-AIF-4.

作者信息

Sondek J, Lambright D G, Noel J P, Hamm H E, Sigler P B

机构信息

Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, Connecticut.

出版信息

Nature. 1994 Nov 17;372(6503):276-9. doi: 10.1038/372276a0.

Abstract

Aluminium fluoride (AIF-4) activates members of the heterotrimeric G-protein (G alpha beta gamma) family by binding to inactive G alpha.GDP near the site occupied by the gamma-phosphate in G alpha.GTP (ref. 3). Here we describe the crystal structure of transducin alpha.GDP activated with aluminium fluoride (Gt alpha.GDP.AIF-4.H2O) at 1.7 A, a resolution sufficient to establish the coordination geometry of the bound aluminium fluoride as well as the extensive network of direct and water-mediated interactions that stabilize it. These observations are derived from three independent representations in the asymmetric unit, eliminating any chance of drawing conclusions based on stereochemistry imposed by crystal packing. Surprisingly, aluminium fluoride activates G alpha.GDP by binding with a geometry resembling a pentavalent intermediate for GTP hydrolysis. The stabilizing interactions involve not only residues that interact with the gamma-phosphate in Gt alpha.GTP gamma S, but also conserved residues for GTPase activity. Thus the Gt alpha.GDP.AIF-4.H2O structure provides new insight into the mechanism of GTP hydrolysis.

摘要

氟化铝(AIF-4)通过与处于Gα.GTP中γ-磷酸基团占据位点附近的无活性Gα.GDP结合,激活异源三聚体G蛋白(Gαβγ)家族的成员(参考文献3)。在此,我们描述了在1.7埃分辨率下被氟化铝激活的转导素α.GDP(Gtα.GDP.AIF-4.H2O)的晶体结构,该分辨率足以确定结合的氟化铝的配位几何结构以及稳定它的直接和水介导相互作用的广泛网络。这些观察结果源自不对称单元中的三种独立表示形式,消除了基于晶体堆积所施加的立体化学得出结论的任何可能性。令人惊讶的是,氟化铝通过以类似于GTP水解的五价中间体的几何结构结合来激活Gα.GDP。稳定相互作用不仅涉及与Gtα.GTPγS中的γ-磷酸基团相互作用的残基,还涉及GTPase活性的保守残基。因此,Gtα.GDP.AIF-4.H2O结构为GTP水解机制提供了新的见解。

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