Macrolide resistance from the ribosome perspective.

F Franceschi, Z Kanyo, E C Sherer, J Sutcliffe
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引用次数: 66

Abstract

Macrolides are important antibiotics used in treatment of respiratory tract infections in humans. Although some of these compounds have been in use for 50 years, it has not been until the last few years that their mechanism of action and the nature of ribosomal-based resistance could be more fully understood. With the advent of robust crystals of ribosomal 50S subunits, and structural resolution of macrolides and ketolides complexed to either Haloarcula marismortui or Deinococcus radiodurans 50S, the ability to dissect the binding modes and understand resistance at the level of the ribosome became possible. This review article compares the binding features of 14-, 15-, and 16-membered macrolides to that of ketolides telithromycin and ABT-773 as revealed at the atomistic level. Attempts to understand how modifications to 23S rRNA and/or mutations in ribosomal proteins L4 and L22 that have been found to confer resistance in Streptococcus pneumoniae, Streptococcus pyogenes, and Haemophilus influenzae are told from the perspective of the ribosome.

从核糖体角度看大环内酯类药物耐药性。
大环内酯类药物是治疗人类呼吸道感染的重要抗生素。虽然这些化合物中的一些已经使用了50年,但直到最近几年,它们的作用机制和基于核糖体的耐药性的性质才得以更充分地了解。随着核糖体50S亚基的强大晶体的出现,以及大环内酯和酮内酯与marismortuhaloarcula marismortui或耐辐射球菌50S复合物的结构分辨率的提高,在核糖体水平上解剖结合模式和了解耐药性的能力成为可能。本文从原子水平比较了14-、15-和16元大环内酯类化合物与利霉素和ABT-773酮类化合物的结合特征。试图从核糖体的角度了解23S rRNA修饰和/或核糖体蛋白L4和L22的突变是如何赋予肺炎链球菌、化脓性链球菌和流感嗜血杆菌耐药性的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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