首页> 外文期刊>Proteins: Structure, Function, and Genetics >Hot-spot analysis to dissect the functional protein-protein interface of a tRNA-modifying enzyme.
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Hot-spot analysis to dissect the functional protein-protein interface of a tRNA-modifying enzyme.

机译:热点分析,以分析tRNA修饰酶的功能性蛋白质-蛋白质界面。

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摘要

Interference with protein-protein interactions of interfaces larger than 1500 ?(2) by small drug-like molecules is notoriously difficult, particularly if targeting homodimers. The tRNA modifying enzyme Tgt is only functionally active as a homodimer. Thus, blocking Tgt dimerization is a promising strategy for drug therapy as this protein is key to the development of Shigellosis. Our goal was to identify hot-spot residues which, upon mutation, result in a predominantly monomeric state of Tgt. The detailed understanding of the spatial location and stability contribution of the individual interaction hot-spot residues and the plasticity of motifs involved in the interface formation is a crucial prerequisite for the rational identification of drug-like inhibitors addressing the respective dimerization interface. Using computational analyses, we identified hot-spot residues that contribute particularly to dimer stability: a cluster of hydrophobic and aromatic residues as well as several salt bridges. This in silico prediction led to the identification of a promising double mutant, which was validated experimentally. Native nano-ESI mass spectrometry showed that the dimerization of the suggested mutant is largely prevented resulting in a predominantly monomeric state. Crystal structure analysis and enzyme kinetics of the mutant variant further support the evidence for enhanced monomerization and provide first insights into the structural consequences of the dimer destabilization.
机译:众所周知,很难通过类药物小分子干扰大于1500?(2)的界面的蛋白质-蛋白质相互作用,特别是在靶向同型二聚体的情况下。 tRNA修饰酶Tgt仅作为同型二聚体具有功能活性。因此,阻断Tgt二聚化是药物治疗的一种有前途的策略,因为该蛋白是志贺菌病发展的关键。我们的目标是确定热点残基,这些残基在突变后会导致Tgt处于单体状态。对单个相互作用热点残基的空间位置和稳定性贡献以及界面形成中涉及的基序的可塑性的详细了解,是合理鉴定可解决相应二聚化界面的类药物抑制剂的关键前提。通过计算分析,我们确定了特别有助于二聚体稳定性的热点残基:疏水残基和芳香残基的簇状结构以及几个盐桥。这种计算机模拟的预测导致鉴定出有前途的双突变体,并通过实验进行了验证。天然纳米ESI质谱表明,很大程度上阻止了所建议突变体的二聚化,从而导致了主要的单体状态。突变体变体的晶体结构分析和酶动力学进一步为增强单体化提供了证据,并对二聚体失稳的结构后果提供了初步见解。

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