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Identification of anti-Gram-negative bacteria agents targeting the interaction between ribosomal proteins L12 and L10

机译:鉴定针对核糖体蛋白L12和L10之间相互作用的抗革兰氏阴性菌

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摘要

Gram-negative bacteria have become the main pathogens and cause serious clinical problems with increased morbidity and mortality. However, the slow discovery of new antimicrobial agents is unable to meet the need for the treatment of bacterial infections caused by drug-resistant strains. The interaction of L12 and L10 is essential for ribosomal function and protein synthesis. In this study, a yeast two-hybrid system was established to successfully detect the interaction between L12 and L10 proteins from gram-negative bacteria Escherichia coli, which allows us to screen compounds that specifically disrupt this interaction. With this system, we identified two compounds IMB-84 and IMB-87 that block L12−L10 interaction and show bactericidal activity against E. coli. We used glutathione-S-transferase (GST) pull-down and surface plasmon resonance (SPR) assays to demonstrate that these compounds disrupt L12−L10 interaction in vitro and the target of compounds was further confirmed by the overexpression of target proteins. Moreover, protein synthesis and elongation factor G-dependent GTPase activities are inhibited by two compounds. Therefore, we have identified two antibacterial agents that disrupt L12−L10 interaction by using yeast two-hybrid system.
机译:革兰氏阴性细菌已成为主要病原体,并导致严重的临床问题,并增加了发病率和死亡率。然而,新的抗微生物剂的缓慢发现不能满足治疗由耐药菌株引起的细菌感染的需要。 L12和L10的相互作用对于核糖体功能和蛋白质合成至关重要。在这项研究中,建立了酵母双杂交系统以成功检测革兰氏阴性细菌大肠杆菌中L12和L10蛋白之间的相互作用,这使我们能够筛选出特异性破坏这种相互作用的化合物。通过该系统,我们鉴定了两种化合物IMB-84和IMB-87,它们阻止L12-L10相互作用并显示出对大肠杆菌的杀菌活性。我们使用谷胱甘肽-S-转移酶(GST)下拉和表面等离振子共振(SPR)分析来证明这些化合物在体外破坏L12-L10相互作用,并且目标蛋白的过表达进一步证实了目标化合物。而且,蛋白质合成和依赖于伸长因子G的GTP酶活性被两种化合物抑制。因此,我们确定了两种使用酵母双杂交系统破坏L12-L10相互作用的抗菌剂。

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