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人类GAIP(Gα相互作用蛋白)的溶液结构:一种G蛋白信号传导调节剂

Solution structure of human GAIP (Galpha interacting protein): a regulator of G protein signaling.

作者信息

de Alba E, De Vries L, Farquhar M G, Tjandra N

机构信息

Laboratory of Biophysical Chemistry, Building 3 National Heart, Lung, and Blood Institute, National Institutes of Health, Bethesda, MD, 20892-0380, USA.

出版信息

J Mol Biol. 1999 Aug 27;291(4):927-39. doi: 10.1006/jmbi.1999.2989.

Abstract

The solution structure of the human protein GAIP (Galpha interacting protein), a regulator of G protein signaling, has been determined by NMR techniques. Dipolar couplings of the oriented protein in two different liquid crystal media have been used in the structure calculation. The solution structure of GAIP is compared to the crystal structure of an homologous protein from rat (RGS4) complexed to the alpha-subunit of a G protein. Some of RGS4 residues involved in the Galpha-RGS binding interface have similar orientations in GAIP (free form), indicating that upon binding these residues do not suffer conformational rearrangements, and therefore, their role does not seem to be restricted to Galpha interaction but also to RGS folding and stability. We suggest that other structural differences between the two proteins may be related to the process of binding as well as to a distinct efficiency in their respective GTPase activating function.

摘要

人源蛋白GAIP(Gα相互作用蛋白)是一种G蛋白信号调节剂,其溶液结构已通过核磁共振技术确定。在结构计算中使用了该定向蛋白在两种不同液晶介质中的偶极耦合。将GAIP的溶液结构与来自大鼠的同源蛋白(RGS4)与G蛋白α亚基复合的晶体结构进行了比较。RGS4中参与Gα-RGS结合界面的一些残基在GAIP(游离形式)中具有相似的取向,这表明在结合时这些残基不会发生构象重排,因此,它们的作用似乎不仅限于与Gα相互作用,还涉及RGS的折叠和稳定性。我们认为这两种蛋白之间的其他结构差异可能与结合过程以及它们各自的GTP酶激活功能的不同效率有关。

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