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新型氟酮内酯类药物作用模式的研究进展,该类药物是强效的细菌蛋白质合成抑制剂。

Insights into the mode of action of novel fluoroketolides, potent inhibitors of bacterial protein synthesis.

机构信息

Department of Biochemistry, School of Medicine, University of Patras, Patras, Greece.

出版信息

Antimicrob Agents Chemother. 2014;58(1):472-80. doi: 10.1128/AAC.01994-13. Epub 2013 Nov 4.

DOI:10.1128/AAC.01994-13
PMID:24189263
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3910732/
Abstract

Ketolides, the third generation of expanded-spectrum macrolides, have in the last years become a successful weapon in the endless war against macrolide-resistant pathogens. Ketolides are semisynthetic derivatives of the naturally produced macrolide erythromycin, displaying not only improved activity against some erythromycin-resistant strains but also increased bactericidal activity as well as inhibitory effects at lower drug concentrations. In this study, we present a series of novel ketolides carrying alkyl-aryl side chains at the C-6 position of the lactone ring and, additionally, one or two fluorine atoms attached either directly to the lactone ring at the C-2 position or indirectly via the C-13 position. According to our genetic and biochemical studies, these novel ketolides occupy the known macrolide binding site at the entrance of the ribosomal tunnel and exhibit lower MIC values against wild-type or mutant strains than erythromycin. In most cases, the ketolides display activities comparable to or better than the clinically used ketolide telithromycin. Chemical protection experiments using Escherichia coli ribosomes bearing U2609C or U754A mutations in 23S rRNA suggest that the alkyl-aryl side chain establishes an interaction with the U2609-A752 base pair, analogous to that observed with telithromycin but unlike the interactions formed by cethromycin. These findings reemphasize the versatility of the alkyl-aryl side chains with respect to species specificity, which will be important for future design of improved antimicrobial agents.

摘要

酮内酯类是第三代扩展谱大环内酯类抗生素,近年来已成为对抗大环内酯类耐药病原体的无尽战争中的有力武器。酮内酯类是天然产生的大环内酯类红霉素的半合成衍生物,不仅对一些红霉素耐药菌株的活性提高,而且杀菌活性和在较低药物浓度下的抑制作用也增强。在本研究中,我们展示了一系列新型酮内酯类化合物,它们在内酯环的 C-6 位带有烷基-芳基侧链,此外,在 C-2 位直接或通过 C-13 位间接连接一个或两个氟原子。根据我们的遗传和生化研究,这些新型酮内酯类化合物占据了核糖体隧道入口处已知的大环内酯类结合位点,并且对野生型或突变菌株的 MIC 值低于红霉素。在大多数情况下,酮内酯类化合物的活性与临床使用的酮内酯类药物泰利霉素相当或更好。使用大肠杆菌核糖体进行的化学保护实验,该核糖体在 23S rRNA 中带有 U2609C 或 U754A 突变,表明烷基-芳基侧链与 U2609-A752 碱基对建立了相互作用,类似于泰利霉素观察到的相互作用,但与头孢曲松形成的相互作用不同。这些发现再次强调了烷基-芳基侧链在种属特异性方面的多功能性,这对于未来设计改进的抗菌剂将是重要的。

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本文引用的文献

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On the use of the antibiotic chloramphenicol to target polypeptide chain mimics to the ribosomal exit tunnel.利用抗生素氯霉素将多肽链模拟物靶向核糖体出口隧道。
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Selective protein synthesis by ribosomes with a drug-obstructed exit tunnel.核糖体通过药物阻塞的出口隧道进行选择性蛋白质合成。
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Structures of the Escherichia coli ribosome with antibiotics bound near the peptidyl transferase center explain spectra of drug action.结合在肽基转移酶中心附近的抗生素的大肠杆菌核糖体结构解释了药物作用的光谱。
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