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对利福平的耐药性:综述

Resistance to rifampicin: a review.

作者信息

Goldstein Beth P

机构信息

Wayne, PA, USA.

出版信息

J Antibiot (Tokyo). 2014 Sep;67(9):625-30. doi: 10.1038/ja.2014.107. Epub 2014 Aug 13.

Abstract

Resistance to rifampicin (RIF) is a broad subject covering not just the mechanism of clinical resistance, nearly always due to a genetic change in the β subunit of bacterial RNA polymerase (RNAP), but also how studies of resistant polymerases have helped us understand the structure of the enzyme, the intricacies of the transcription process and its role in complex physiological pathways. This review can only scratch the surface of these phenomena. The identification, in strains of Escherichia coli, of the positions within β of the mutations determining resistance is discussed in some detail, as are mutations in organisms that are therapeutic targets of RIF, in particular Mycobacterium tuberculosis. Interestingly, changes in the same three codons of the consensus sequence occur repeatedly in unrelated RIF-resistant (RIF(r)) clinical isolates of several different bacterial species, and a single mutation predominates in mycobacteria. The utilization of our knowledge of these mutations to develop rapid screening tests for detecting resistance is briefly discussed. Cross-resistance among rifamycins has been a topic of controversy; current thinking is that there is no difference in the susceptibility of RNAP mutants to RIF, rifapentine and rifabutin. Also summarized are intrinsic RIF resistance and other resistance mechanisms.

摘要

对利福平(RIF)的耐药性是一个广泛的主题,不仅涵盖临床耐药机制(几乎总是由于细菌RNA聚合酶(RNAP)β亚基的基因变化所致),还包括对耐药聚合酶的研究如何帮助我们理解该酶的结构、转录过程的复杂性及其在复杂生理途径中的作用。本综述只能触及这些现象的表面。本文将较为详细地讨论在大肠杆菌菌株中确定耐药性的β亚基内突变位置的鉴定,以及作为RIF治疗靶点的生物体中的突变,特别是结核分枝杆菌。有趣的是,在几种不同细菌物种的无关耐利福平(RIF(r))临床分离株中,共有序列的相同三个密码子的变化反复出现,并且在分枝杆菌中单个突变占主导。本文还简要讨论了如何利用我们对这些突变的了解来开发检测耐药性的快速筛选试验。利福霉素之间的交叉耐药性一直是一个有争议的话题;目前的观点是,RNAP突变体对RIF、利福喷汀和利福布汀的敏感性没有差异。本文还总结了内在RIF耐药性和其他耐药机制。

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