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Dynamic properties of the Ras switch I region and its importance for binding to effectors

机译:Ras开关I区域的动态特性及其重要性 用于绑定效应子

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摘要

We have investigated the dynamic properties of the switch I region of the GTP-binding protein Ras by using mutants of Thr-35, an invariant residue necessary for the switch function. Here we show that these mutants, previously used as partial loss-of-function mutations in cell-based assays, have a reduced affinity to Ras effector proteins without Thr-35 being involved in any interaction. The structure of Ras(T35S)⋅GppNHp was determined by x-ray crystallography. Whereas the overall structure is very similar to wildtype, residues from switch I are completely invisible, indicating that the effector loop region is highly mobile. 31P-NMR data had indicated an equilibrium between two rapidly interconverting conformations, one of which (state 2) corresponds to the structure found in the complex with the effectors. 31P-NMR spectra of Ras mutants (T35S) and (T35A) in the GppNHp form show that the equilibrium is shifted such that they occur predominantly in the nonbinding conformation (state 1). On addition of Ras effectors, Ras(T35S) but not Ras(T35A) shift to positions corresponding to the binding conformation. The structural data were correlated with kinetic experiments that show two-step binding reaction of wild-type and (T35S)Ras with effectors requires the existence of a rate-limiting isomerization step, which is not observed with T35A. The results indicate that minor changes in the switch region, such as removing the side chain methyl group of Thr-35, drastically affect dynamic behavior and, in turn, interaction with effectors. The dynamics of the switch I region appear to be responsible for the conservation of this threonine residue in GTP-binding proteins.
机译:我们已经通过使用Thr-35的突变体研究了GTP结合蛋白Ras的开关I区的动力学特性,Thr-35是开关功能所必需的不变残基。在这里,我们显示了这些突变体,以前在基于细胞的测定中用作部分功能丧失的突变体,与Ras效应蛋白的亲和力降低,而Thr-35没有参与任何相互作用。通过X射线晶体学测定Ras(T35S)·GppNHp的结构。尽管总体结构与野生型非常相似,但开关I的残基是完全不可见的,表明效应子环区域具有很高的移动性。 31 核磁共振数据表明,在两个快速相互转化的构象之间存在平衡,其中一个(状态2)对应于在具有效应物的复合物中发现的结构。 GppNHp形式的Ras突变体(T35S)和(T35A)的 31 P-NMR谱图表明,平衡发生了位移,使得它们主要以非结合构象出现(状态1)。添加Ras效应子后,Ras(T35S)而不是Ras(T35A)移至与结合构象相对应的位置。结构 数据与显示两个步骤的动力学实验相关 野生型和(T35S)Ras与效应子的结合反应需要 存在限速异构化步骤,未观察到 与T35A。结果表明,开关中的微小变化 区域,例如去除Thr-35的侧链甲基, 剧烈影响动态行为,进而与 效应子。开关I区域的动态似乎是负责任的 GTP结合蛋白中苏氨酸残基的保护。

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