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Structural basis for full-spectrum inhibition of translational functions on a tRNA synthetase

机译:全谱抑制tRNA合成酶翻译功能的结构基础

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The polyketide natural product borrelidin displays antibacterial, antifungal, antimalarial, anticancer, insecticidal and herbicidal activities through the selective inhibition of threonyl-tRNA synthetase (ThrRS). How borrelidin simultaneously attenuates bacterial growth and suppresses a variety of infections in plants and animals is not known. Here we show, using X-ray crystal structures and functional analyses, that a single molecule of borrelidin simultaneously occupies four distinct subsites within the catalytic domain of bacterial and human ThrRSs. These include the three substrate-binding sites for amino acid, ATP and tRNA associated with aminoacylation, and a fourth 'orthogonal' subsite created as a consequence of binding. Thus, borrelidin competes with all three aminoacylation substrates, providing a potent and redundant mechanism to inhibit ThrRS during protein synthesis. These results highlight a surprising natural design to achieve the quadrivalent inhibition of translation through a highly conserved family of enzymes.
机译:聚酮化合物天然产物硼瑞林通过选择性抑制苏氨酰-tRNA合成酶(ThrRS)表现出抗菌,抗真菌,抗疟疾,抗癌,杀虫和除草活性。 borrelidin如何同时减弱细菌的生长并抑制动植物的各种感染尚不清楚。在这里,我们使用X射线晶体结构和功能分析表明,硼瑞霉菌素的单个分子同时在细菌和人类ThrRS的催化域内占据了四个不同的亚位点。这些包括与氨基酸酰化相关的氨基酸,ATP和tRNA的三个底物结合位点,以及由于结合而产生的第四个“正交”子位点。因此,硼瑞林可与所有三种氨基酰化底物竞争,从而提供了一种有效且冗余的机制来抑制蛋白质合成过程中的ThrRS。这些结果突出了令人惊讶的自然设计,以通过高度保守的酶家族实现翻译的四价抑制。

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