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磷酸结合环与开关 I 之间的瞬时相互作用有助于 Gαi1 中受体和核苷酸之间的变构网络。

A transient interaction between the phosphate binding loop and switch I contributes to the allosteric network between receptor and nucleotide in Gαi1.

机构信息

Department of Biochemistry and Vanderbilt University Medical Center, Nashville, Tennessee 37232.

Department of Pharmacology, Vanderbilt University Medical Center, Nashville, Tennessee 37232.

出版信息

J Biol Chem. 2014 Apr 18;289(16):11331-11341. doi: 10.1074/jbc.M113.539064. Epub 2014 Mar 4.

Abstract

Receptor-mediated activation of the Gα subunit of heterotrimeric G proteins requires allosteric communication between the receptor binding site and the guanine nucleotide binding site, which are separated by >30 Å. Structural changes in the allosteric network connecting these sites are predicted to be transient in the wild-type Gα subunit, making studies of these connections challenging. In the current work, site-directed mutants that alter the energy barriers between the activation states are used as tools to better understand the transient features of allosteric signaling in the Gα subunit. The observed differences in relative receptor affinity for intact Gαi1 subunits versus C-terminal Gαi1 peptides harboring the K345L mutation are consistent with this mutation modulating the allosteric network in the protein subunit. Measurement of nucleotide exchange rates, affinity for metarhodopsin II, and thermostability suggest that the K345L Gαi1 variant has reduced stability in both the GDP-bound and nucleotide-free states as compared with wild type but similar stability in the GTPγS-bound state. High resolution x-ray crystal structures reveal conformational changes accompanying the destabilization of the GDP-bound state. Of these, the conformation for Switch I was stabilized by an ionic interaction with the phosphate binding loop. Further site-directed mutagenesis suggests that this interaction between Switch I and the phosphate binding loop is important for receptor-mediated nucleotide exchange in the wild-type Gαi1 subunit.

摘要

G 蛋白偶联受体激活异源三聚体 G 蛋白的α亚基需要受体结合位点和鸟嘌呤核苷酸结合位点之间的变构通讯,这两个位点之间的距离超过 30 Å。在野生型 Gα亚基中,连接这些位点的变构网络中的结构变化预计是短暂的,这使得这些连接的研究具有挑战性。在目前的工作中,改变激活状态之间能量障碍的定点突变被用作工具,以更好地理解 Gα亚基中变构信号传递的瞬态特征。与野生型相比,完整 Gαi1 亚基与含有 K345L 突变的 C 末端 Gαi1 肽相比,观察到对受体亲和力的差异,这与该突变调节蛋白质亚基中的变构网络一致。核苷酸交换率、对 metarhodopsin II 的亲和力和热稳定性的测量表明,与野生型相比,K345L Gαi1 变体在 GDP 结合和无核苷酸状态下的稳定性降低,但在 GTPγS 结合状态下的稳定性相似。高分辨率 X 射线晶体结构揭示了伴随 GDP 结合状态失稳的构象变化。在这些变化中,Switch I 的构象通过与磷酸结合环的离子相互作用得到稳定。进一步的定点突变表明,Switch I 与磷酸结合环之间的这种相互作用对于野生型 Gαi1 亚基中受体介导的核苷酸交换很重要。

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