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Shift in the equilibrium between on and off states of the allosteric switch in ras-GppNHp affected by small molecules and bulk solvent composition

机译:ras-GppNHp中变构开关的开和关状态之间的平衡位移受小分子和本体溶剂组成的影响

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Ras GTPase cycles between its active GTP-bound form promoted by GEFs and its inactive GDP-bound form promoted by GAPs to affect the control of various cellular functions. It is becoming increasingly apparent that subtle regulation of the GTP-bound active state may occur through promotion of substates mediated by an allosteric switch mechanism that induces a disorder to order transition in switch II upon ligand binding at an allosteric site. We show with high-resolution structures that calcium acetate and either dithioerythritol (DTE) or dithiothreitol (DTT) soaked into H-Ras-GppNHp crystals in the presence of a moderate amount of poly(ethylene glycol) (PEG) can selectively shift the equilibrium to the "on" state, where the active site appears to be poised for catalysis (calcium acetate), or to what we call the "ordered off" state, which is associated with an anticatalytic conformation (DTE or DTT). We also show that the equilibrium is reversible in our crystals and dependent on the nature of the small molecule present. Calcium acetate binding in the allosteric site stabilizes the conformation observed in the H-Ras-GppNHp/NOR1A complex, and PEG, DTE, and DTT stabilize the anticatalytic conformation observed in the complex between the Ras homologue Ran and Importin-β. The small molecules are therefore selecting biologically relevant conformations in the crystal that are sampled by the disordered switch II in the uncomplexed GTP-bound form of H-Ras. In the presence of a large amount of PEG, the ordered off conformation predominates, whereas in solution, in the absence of PEG, switch regions appear to remain disordered in what we call the off state, unable to bind DTE.
机译:Ras GTPase在由GEF促进的活性GTP结合形式与由GAP促进的无活性GDP结合形式之间循环,从而影响各种细胞功能的控制。越来越明显的是,通过促进由变构开关机制介导的亚状态的发生,可以对GTP结合的活性状态进行细微调节,所述变构开关机制在配体结合在变构位点时诱导开关II中的无序转变。我们以高分辨率的结构显示,在中等量的聚乙二醇(PEG)存在下,乙酸钙和二硫赤藓糖醇(DTE)或二硫苏糖醇(DTT)浸入H-Ras-GppNHp晶体中可以选择性地移动平衡到“开启”状态,即活性部位似乎已准备好进行催化(乙酸钙),或至所谓的“有序关闭”状态,这与抗催化构象(DTE或DTT)相关。我们还表明,平衡在我们的晶体中是可逆的,并且取决于存在的小分子的性质。乙酸钙在变构位点的结合稳定了在H-Ras-GppNHp / NOR1A复合物中观察到的构象,而PEG,DTE和DTT稳定了在Ras同源Ran和Importin-β之间的复合物中观察到的抗催化构象。因此,小分子正在晶体中选择生物学上相关的构象,这些构象是由无序开关II以无复杂的GTP结合形式的H-Ras取样的。在存在大量PEG的情况下,有序的脱位构象占优势,而在溶液中,在没有PEG的情况下,开关区域似乎保持无序状态,即我们所说的“ off”状态,无法结合DTE。

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