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A Computational Study of a Recreated G Protein-GEF Reaction Intermediate Competent for Nucleotide Exchange: Fate of the Mg Ion

机译:再生的G蛋白-GEF反应中间体胜任核苷酸交换的计算研究:镁离子的命运。

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摘要

Small G-proteins of the superfamily Ras function as molecular switches, interacting with different cellular partners according to their activation state. G-protein activation involves the dissociation of bound GDP and its replacement by GTP, in an exchange reaction that is accelerated and regulated in the cell by guanine-nucleotide exchange factors (GEFs). Large conformational changes accompany the exchange reaction, and our understanding of the mechanism is correspondingly incomplete. However, much knowledge has been derived from structural studies of blocked or inactive mutant GEFs, which presumably closely represent intermediates in the exchange reaction and yet which are by design incompetent for carrying out the nucleotide exchange reaction. In this study we have used comparative modelling to recreate an exchange-competent form of a late, pre-GDP-ejection intermediate species in Arf1, a well-characterized small G-protein. We extensively characterized three distinct models of this intermediate using molecular dynamics simulations, allowing us to address ambiguities related to the mutant structural studies. We observed in particular the unfavorable nature of Mg associated forms of the complex and the establishment of closer Arf1-GEF contacts in its absence. The results of this study shed light on GEF-mediated activation of this small G protein and on predicting the fate of the Mg ion at a critical point in the exchange reaction. The structural models themselves furnish additional targets for interfacial inhibitor design, a promising direction for exploring potentially druggable targets with high biological specificity.
机译:超家族Ras的小G蛋白起分子开关的作用,根据其激活状态与不同的细胞伴侣相互作用。 G蛋白活化涉及结合的GDP的解离,并通过鸟嘌呤-核苷酸交换因子(GEF)在细胞中加速和调节的交换反应中被GTP取代。交换反应伴随着大的构象变化,我们对机理的理解也相应地不完整。然而,从对封闭的或无活性的突变体GEF的结构研究中已经获得了很多知识,据推测它们紧密地代表了交换反应中的中间体,但是根据设计,它们不适合进行核苷酸交换反应。在这项研究中,我们已经使用比较模型来重建Arf1(一种特征充分的小G蛋白)中GDP之前的晚期喷射中间物种的交换能力形式。我们使用分子动力学模拟广泛表征了该中间体的三个不同模型,从而使我们能够解决与突变体结构研究相关的歧义。我们特别观察到了镁与该复合物相关形式的不利性质,并且在不存在的情况下建立了更紧密的Arf1-GEF接触。这项研究的结果揭示了GEF介导的这种小G蛋白的活化,并预测了交换反应关键点Mg离子的命运。结构模型本身为界面抑制剂设计提供了额外的靶标,这是探索具有高生物学特异性的潜在可药物治疗靶标的有希望的方向。

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