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Discovery of a potent benzoxaborole-based anti-pneumococcal agent targeting leucyl-tRNA synthetase

机译:发现有效的基于苯并氧杂硼酸的抗肺炎球菌药物,靶向亮氨酰tRNA合成酶

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Streptococcus pneumoniae causes bacterial pneumonia with high mortality and morbidity. The emergency of multidrug-resistant bacteria threatens the treatment of the disease. Leucyl-tRNA synthetase (LeuRS) plays an essential role in cellular translation and is an attractive drug target for antimicrobial development. Here we report the compound ZCL039, a benzoxaborole-based derivative of AN2690, as a potent anti-pneumococcal agent that inhibits S. pneumoniae LeuRS ( Sp LeuRS) activity. We show using kinetic, biochemical analyses combined with the crystal structure of ZCL039-AMP in complex with the separated Sp LeuRS editing domain, that ZCL039 binds to the LeuRS editing active site which requires the presence of tRNALeu, and employs an uncompetitive inhibition mechanism. Further docking models establish that ZCL039 clashes with the eukaryal/archaeal specific insertion I4ae helix within editing domains. These findings demonstrate the potential of benzoxaboroles as effective LeuRS inhibitors for pneumococcus infection therapy, and provide future structure-guided drug design and optimization.
机译:肺炎链球菌引起细菌性肺炎,死亡率高,发病率高。耐多药细菌的紧急情况威胁到该病的治疗。 Leucyl-tRNA合成酶(LeuRS)在细胞翻译中起着至关重要的作用,并且是抗微生物发展的有吸引力的药物靶标。在这里,我们报告化合物ZCL039,一种基于AN2690的基于苯并氧杂硼烷的衍生物,作为一种有效的抗肺炎球菌药物,可抑制肺炎链球菌LeuRS(Sp LeuRS)活性。我们使用动力学,生化分析与结合有单独的Sp LeuRS编辑域的ZCL039-AMP的晶体结构相结合,表明ZCL039与需要存在tRNA Leu 的LeuRS编辑活性位点结合,并采用了非竞争性的抑制机制。进一步的对接模型确定ZCL039与编辑域内的真核/古细菌特异性插入I4ae螺旋发生冲突。这些发现证明了苯并氧杂硼烷作为有效的LeuRS抑制剂用于肺炎球菌感染治疗的潜力,并提供了未来结构指导的药物设计和优化方法。

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