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Giα1活性构象的结构及GTP水解机制

Structures of active conformations of Gi alpha 1 and the mechanism of GTP hydrolysis.

作者信息

Coleman D E, Berghuis A M, Lee E, Linder M E, Gilman A G, Sprang S R

机构信息

Howard Hughes Medical Institute, Dallas, TX.

出版信息

Science. 1994 Sep 2;265(5177):1405-12. doi: 10.1126/science.8073283.

Abstract

Mechanisms of guanosine triphosphate (GTP) hydrolysis by members of the G protein alpha subunit-p21ras superfamily of guanosine triphosphatases have been studied extensively but have not been well understood. High-resolution x-ray structures of the GTP gamma S and GDP.AlF4- complexes formed by the G protein Gi alpha 1 demonstrate specific roles in transition-state stabilization for two highly conserved residues. Glutamine204 (Gln61 in p21ras) stabilizes and orients the hydrolytic water in the trigonal-bipyramidal transition state. Arginine 178 stabilizes the negative charge at the equatorial oxygen atoms of the pentacoordinate phosphate intermediate. Conserved only in the G alpha family, this residue may account for the higher hydrolytic rate of G alpha proteins relative to those of the p21ras family members. The fold of Gi alpha 1 differs from that of the homologous Gt alpha subunit in the conformation of a helix-loop sequence located in the alpha-helical domain that is characteristic of these proteins; this site may participate in effector binding. The amino-terminal 33 residues are disordered in GTP gamma S-Gi alpha 1, suggesting a mechanism that may promote release of the beta gamma subunit complex when the alpha subunit is activated by GTP.

摘要

鸟苷三磷酸酶(GTP酶)的G蛋白α亚基-p21ras超家族成员催化鸟苷三磷酸(GTP)水解的机制已得到广泛研究,但尚未完全明确。G蛋白Giα1形成的GTPγS和GDP·AlF4-复合物的高分辨率X射线结构显示,两个高度保守的残基在过渡态稳定中发挥特定作用。谷氨酰胺204(p21ras中的谷氨酰胺61)在三角双锥过渡态中稳定并定位水解水。精氨酸178稳定五配位磷酸中间体赤道氧原子上的负电荷。该残基仅在Gα家族中保守,可能是Gα蛋白水解速率高于p21ras家族成员的原因。Giα1的折叠与同源Gtα亚基不同,位于α螺旋结构域的螺旋-环序列构象不同,这是这些蛋白质的特征;该位点可能参与效应器结合。在GTPγS-Giα1中,氨基末端的33个残基无序,这表明当α亚基被GTP激活时,可能存在促进βγ亚基复合物释放的机制。

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