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Revisiting the structures of several antibiotics bound to the bacterial ribosome

机译:考察与细菌核糖体结合的几种抗生素的结构

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摘要

The increasing prevalence of antibiotic-resistant pathogens reinforces the need for structures of antibiotic-ribosome complexes that are accurate enough to enable the rational design of novel ribosome-targeting therapeutics. Structures of many antibiotics in complex with both archaeal and eubacterial ribosomes have been determined, yet discrepancies between several of these models have raised the question of whether these differences arise from species-specific variations or from experimental problems. Our structure of chloramphenicol in complex with the 70S ribosome from Thermus thermophilus suggests a model for chloramphenicol bound to the large subunit of the bacterial ribosome that is radically different from the prevailing model. Further, our structures of the macrolide antibiotics erythromycin and azithromycin in complex with a bacterial ribosome are indistinguishable from those determined of complexes with the 50S subunit of Haloarcula marismortui, but differ significantly from the models that have been published for 50S subunit complexes of the eubacterium Deinococcus radiodurans. Our structure of the antibiotic telithromycin bound to the T. thermophilus ribosome reveals a lactone ring with a conformation similar to that observed in the H. marismortui and D. radiodurans complexes. However, the alkyl-aryl moiety is oriented differently in all three organisms, and the contacts observed with the T. thermophilus ribosome are consistent with biochemical studies performed on the Escherichia coli ribosome. Thus, our results support a mode of macrolide binding that is largely conserved across species, suggesting that the quality and interpretation of electron density, rather than species specificity, may be responsible for many of the discrepancies between the models.
机译:抗生素抗性病原体的流行日益增加,因此需要足够精确的抗生素-核糖体复合物结构,以能够合理设计新型靶向核糖体的治疗剂。已经确定了许多与古细菌核糖体和真细菌核糖体复合的抗生素的结构,但是这些模型中的几种之间的差异提出了一个问题,即这些差异是由于物种特异性变异还是由于实验问题引起的。我们的氯霉素与嗜热栖热菌的70S核糖体复合的结构表明,氯霉素与细菌核糖体的大亚基结合的模型与目前的模型完全不同。此外,我们与细菌核糖体复合物中的大环内酯类抗生素红霉素和阿奇霉素的结构与确定的与滨海嗜盐藻的50S亚基复合物的结构没有区别,但与已公开的真细菌Deinococcus 50S亚基复合物的模型明显不同radiodurans。我们与嗜热链球菌核糖体结合的抗生素telithromycin的结构揭示了一个内酯环,其构象类似于在marismortui和D. radiodurans复合体中观察到的构象。但是,烷基-芳基部分在所有三种生物中的取向都不同,并且嗜热链球菌核糖体所观察到的接触与对大肠杆菌核糖体进行的生化研究一致。因此,我们的结果支持了大环内酯类化合物的结合模式,该模式在物种间基本保持不变,这表明电子密度的质量和解释而不是物种的特异性可能是造成模型之间许多差异的原因。

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