首页> 美国卫生研究院文献>PLoS Neglected Tropical Diseases >Structures of Trypanosoma brucei Methionyl-tRNA Synthetase with Urea-Based Inhibitors Provide Guidance for Drug Design against Sleeping Sickness
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Structures of Trypanosoma brucei Methionyl-tRNA Synthetase with Urea-Based Inhibitors Provide Guidance for Drug Design against Sleeping Sickness

机译:布氏锥虫甲硫基-tRNA合成酶与基于尿素的抑制剂的结构为抗睡眠病药物设计提供指导

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摘要

Methionyl-tRNA synthetase of Trypanosoma brucei (TbMetRS) is an important target in the development of new antitrypanosomal drugs. The enzyme is essential, highly flexible and displaying a large degree of changes in protein domains and binding pockets in the presence of substrate, product and inhibitors. Targeting this protein will benefit from a profound understanding of how its structure adapts to ligand binding. A series of urea-based inhibitors (UBIs) has been developed with IC50 values as low as 19 nM against the enzyme. The UBIs were shown to be orally available and permeable through the blood-brain barrier, and are therefore candidates for development of drugs for the treatment of late stage human African trypanosomiasis. Here, we expand the structural diversity of inhibitors from the previously reported collection and tested for their inhibitory effect on TbMetRS and on the growth of T. brucei cells. The binding modes and binding pockets of 14 UBIs are revealed by determination of their crystal structures in complex with TbMetRS at resolutions between 2.2 Å to 2.9 Å. The structures show binding of the UBIs through conformational selection, including occupancy of the enlarged methionine pocket and the auxiliary pocket. General principles underlying the affinity of UBIs for TbMetRS are derived from these structures, in particular the optimum way to fill the two binding pockets. The conserved auxiliary pocket might play a role in binding tRNA. In addition, a crystal structure of a ternary TbMetRS•inhibitor•AMPPCP complex indicates that the UBIs are not competing with ATP for binding, instead are interacting with ATP through hydrogen bond. This suggests a possibility that a general ‘ATP-engaging’ binding mode can be utilized for the design and development of inhibitors targeting tRNA synthetases of other disease-causing pathogen.
机译:布鲁氏锥虫的甲硫氨酰-tRNA合成酶(TbMetRS)是开发抗锥虫新药的重要目标。该酶是必不可少的,高度灵活的,并且在存在底物,产物和抑制剂的情况下在蛋白质结构域和结合口袋中显示出很大程度的变化。靶向这种蛋白质将受益于对其结构如何适应配体结合的深刻理解。已经开发了一系列基于尿素的抑制剂(UBIs),针对该酶的IC50值低至19 nM。已证明,UBI可以口服使用并且可以通过血脑屏障渗透,因此是开发用于治疗晚期人类非洲锥虫病的药物的候选人。在这里,我们扩大了先前报道的抑制剂的结构多样性,并测试了它们对TbMetRS和T. brucei细胞生长的抑制作用。通过确定其与TbMetRS配合物在2.2到2.9的分辨率下的晶体结构,揭示了14个UBI的结合模式和结合口袋。该结构显示UBI通过构象选择结合,包括占用扩大的蛋氨酸袋和辅助袋。从这些结构中得出了UBI对TbMetRS亲和力的一般原理,尤其是填充两个结合袋的最佳方法。保守的辅助口袋可能在结合tRNA中起作用。此外,三元TbMetRS•抑制剂•AMPPCP配合物的晶体结构表明,UBI不与ATP竞争结合,而是通过氢键与ATP相互作用。这暗示了一种可能性,即一般的“ ATP结合”结合模式可用于设计和开发靶向其他致病病原体的tRNA合成的抑制剂。

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