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Structural Basis for Specific Inhibition of tRNA Synthetase by an ATP Competitive Inhibitor

机译:ATP竞争性抑制剂特异性抑制tRNA合成酶的结构基础

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Pharmaceutical inhibitors of aminoacyl-tRNA synthetases demand high species and family specificity. The antimalarial ATP-mimetic cladosporin selectively inhibits Plasmodium falciparum LysRS (PfLysRS). How the binding to a universal ATP site achieves the specificity is unknown. Here we report three crystal structures of cladosporin with human LysRS, PfLysRS, and a Pf-like human LysRS mutant. In all three structures, cladosporin occupies the class defining ATP-binding pocket, replacing the adenosine portion of ATP. Three residues holding the methyltetrahydropyran moiety of cladosporin are critical for the specificity of cladosporin against LysRS over other class II tRNA synthetase families. The species-exclusive inhibition of PfLysRS is linked to a structural divergence beyond the active site that mounts a lysine-specific stabilizing response to binding cladosporin. These analyses reveal that inherent divergence of tRNA synthetase structural assembly may allow for highly specific inhibition even through the otherwise universal substrate binding pocket and highlight the potential for structure-driven drug development.
机译:氨酰基-tRNA合成酶的药物抑制剂需要高种类和家族特异性。抗疟疾ATP模仿cladosporin选择性抑制恶性疟原虫LysRS(PfLysRS)。与通用ATP位点的结合如何实现特异性尚不清楚。在这里,我们报告与人LysRS,PfLysRS和一个Pf样人LysRS突变体的cladosporin的三个晶体结构。在这三个结构中,clasporporin占据了定义ATP结合口袋的类别,取代了ATP的腺苷部分。相对于其他II类tRNA合成酶家族,持有克拉多孢菌素的甲基四氢吡喃部分的三个残基对于克拉多孢菌素对LysRS的特异性至关重要。 PfLysRS的物种排他性抑制与超出活性位点的结构差异有关,该位点对结合的clasporporin进行了赖氨酸特异性的稳定反应。这些分析表明,tRNA合成酶结构组装的内在差异甚至可以通过其他通用的底物结合口袋实现高度特异性的抑制,并突出了结构驱动药物开发的潜力。

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