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Dimerisation-dependent GTPase reaction of MnmE: how potassium acts as GTPase-activating element

机译:MnmE的二聚体依赖性GTPase反应:钾如何充当GTPase激活元件

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摘要

MnmE, a Guanine nucleotide-binding protein conserved between bacteria and man, is involved in the modification of tRNAs. Here we provide biochemical and X-ray structural evidence for a new GTP-hydrolysis mechanism, where the G-domains of MnmE dimerise in a potassium-dependent manner and induce GTP hydrolysis. The structure in the presence of GDP-AlFx and potassium shows how juxtaposition of the subunits induces a conformational change around the nucleotide which reorients the catalytic machinery. A critical glutamate is positioned such as to stabilise or activate the attacking water. Potassium provides a positive charge into the catalytic site in a position analogous to the arginine finger in the Ras-RasGAP system. Mutational studies show that potassium-dependent dimerisation and GTP hydrolysis can be uncoupled and that interaction between the G-domains is a prerequisite for subsequent phosphoryl transfer. We propose a model for the juxtaposition of G-domains in the full-length protein and how it induces conformational changes in the putative tRNA-modification centre.
机译:MnmE是一种在细菌和人类之间保守的鸟嘌呤核苷酸结合蛋白,参与tRNA的修饰。在这里,我们提供了新的GTP水解机制的生化和X射线结构证据,其中MnmE的G结构域以钾依赖性方式二聚并诱导GTP水解。在存在GDP-AlFx和钾的情况下,该结构表明亚单位的并置如何诱导核苷酸周围的构象变化,从而改变催化机制的方向。放置关键的谷氨酸盐以稳定或活化侵蚀水。钾在类似于Ras-RasGAP系统中精氨酸指的位置向催化位点提供正电荷。突变研究表明,钾依赖性二聚作用和GTP水解作用可以不偶联,并且G结构域之间的相互作用是随后进行磷酰基转移的先决条件。我们提出了一个模型,在全长蛋白的G结构域并列,以及它如何在假定的tRNA修饰中心诱导构象变化。

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