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Structural model of ρ1 GABAC receptor based on evolutionary analysis: Testing of predicted protein–protein interactions involved in receptor assembly and function

机译:基于进化分析的ρ1GABAC受体结构模型:测试参与受体组装和功能的预测蛋白相互作用

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摘要

The homopentameric ρ1 GABAC receptor is a ligand-gated ion channel with a binding pocket for γ-aminobutyric acid (GABA) at the interfaces of N-terminal extracellular domains. We combined evolutionary analysis, structural modeling, and experimental testing to study determinants of GABAC receptor assembly and channel gating. We estimated the posterior probability of selection pressure at amino acid residue sites measured as ω-values and built a comparative structural model, which identified several polar residues under strong selection pressure at the subunit interfaces that may form intersubunit hydrogen bonds or salt bridges. At three selected sites (R111, T151, and E55), mutations disrupting intersubunit interactions had strong effects on receptor folding, assembly, and function. We next examined the role of a predicted intersubunit salt bridge for residue pair R158–D204. The mutant R158D, where the positively charged residue is replaced by a negatively charged aspartate, yielded a partially degraded receptor and lacked membrane surface expression. The membrane surface expression was rescued by the double mutant R158D–D204R, where positive and negative charges are switched, although the mutant receptor was inactive. The single mutants R158A, D204R, and D204A exhibited diminished activities and altered kinetic profiles with fast recovery kinetics, suggesting that R158–D204 salt bridge perhaps stabilizes the open state of the GABAC receptor. Our results emphasize the functional importance of highly conserved polar residues at the protein–protein interfaces in GABAC ρ1 receptors and demonstrate how the integration of computational and experimental approaches can aid discovery of functionally important interactions.
机译:同五聚体ρ1GABAC受体是一个配体门控离子通道,在N端胞外域的界面处带有一个用于γ-氨基丁酸(GABA)的结合袋。我们结合了进化分析,结构建模和实验测试来研究GABAC受体装配和通道门控的决定因素。我们估计以ω值测量的氨基酸残基位点选择压力的后验概率,并建立了一个比较结构模型,该模型确定了在强选择压力下亚基界面处可能形成亚基间氢键或盐桥的几个极性残基。在三个选定的位点(R111,T151和E55),破坏亚基间相互作用的突变对受体的折叠,组装和功能有很强的影响。接下来,我们研究了残基对R158–D204的预测亚基间盐桥的作用。突变体R158D,其中带正电荷的残基被带负电荷的天冬氨酸替代,产生了部分降解的受体并且缺乏膜表面表达。膜表面的表达通过双重突变体R158D–D204R得以挽救,尽管突变体受体是无活性的,但其中正电荷和负电荷都可以转换。单个突变体R158A,D204R和D204A表现出活性降低和动力学特性改变,具有快速恢复动力学,表明R158–D204盐桥可能稳定了GABAC受体的开放状态。我们的结果强调了GABACρ1受体的蛋白质-蛋白质界面上高度保守的极性残基的功能重要性,并证明了计算和实验方法的整合如何有助于发现功能上重要的相互作用。

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