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Structures of the Escherichia coli ribosome with antibiotics bound near the peptidyl transferase center explain spectra of drug action

机译:结合在肽基转移酶中心附近的带有抗生素的大肠杆菌核糖体的结构解释了药物作用谱

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摘要

Differences between the structures of bacterial, archaeal, and eukaryotic ribosomes account for the selective action of antibiotics. Even minor variations in the structure of ribosomes of different bacterial species may lead to idiosyncratic, species-specific interactions of the drugs with their targets. Although crystallographic structures of antibiotics bound to the peptidyl transferase center or the exit tunnel of archaeal (Haloarcula marismortui) and bacterial (Deinococcus radiodurans) large ribosomal subunits have been reported, it remains unclear whether the interactions of antibiotics with these ribosomes accurately reflect those with the ribosomes of pathogenic bacteria. Here we report X-ray crystal structures of the Escherichia coli ribosome in complexes with clinically important antibiotics of four major classes, including the macrolide erythromycin, the ketolide telithromycin, the lincosamide clindamycin, and a phenicol, chloramphenicol, at resolutions of ∼3.3 Å–3.4 Å. Binding modes of three of these antibiotics show important variations compared to the previously determined structures. Biochemical and structural evidence also indicates that interactions of telithromycin with the E. coli ribosome more closely resembles drug binding to ribosomes of bacterial pathogens. The present data further argue that the identity of nucleotides 752, 2609, and 2055 of 23S ribosomal RNA explain in part the spectrum and selectivity of antibiotic action.
机译:细菌,古细菌和真核生物核糖体的结构差异解释了抗生素的选择性作用。即使不同细菌物种的核糖体结构发生微小变化,也可能导致药物与其靶标发生特异的物种特异性相互作用。尽管已报道了与肽基转移酶中心或古细菌(Haloarcula marismortui)和细菌(Deinococcus radiodurans)大核糖体亚基结合的抗生素的晶体学结构,但尚不清楚抗生素与这些核糖体的相互作用是否能准确反映出与核糖体的相互作用。致病细菌的核糖体。在这里,我们报告了大肠杆菌核糖体与临床上重要的四大类抗生素复合物的X射线晶体结构,包括大环内酯类红霉素,酮类替利霉素,林可酰胺克林霉素和苯酚,氯霉素,分辨率约为3.3。 3.4Å。与先前确定的结构相比,其中三种抗生素的结合模式显示出重要的变化。生化和结构证据还表明,telithromycin与大肠杆菌核糖体的相互作用与药物与细菌病原体核糖体的结合更为相似。本数据进一步证明23S核糖体RNA的核苷酸752、2609和2055的身份部分解释了抗生素作用的光谱和选择性。

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