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肽基转移酶中心的核糖体蛋白L3和23S核糖体RNA突变与短螺旋体属分离株对泰妙菌素的敏感性降低有关。

Mutations in ribosomal protein L3 and 23S ribosomal RNA at the peptidyl transferase centre are associated with reduced susceptibility to tiamulin in Brachyspira spp. isolates.

作者信息

Pringle Märit, Poehlsgaard Jacob, Vester Birte, Long Katherine S

机构信息

Department of Antibiotics, National Veterinary Institute, SE-75189 Uppsala, Sweden.

出版信息

Mol Microbiol. 2004 Dec;54(5):1295-306. doi: 10.1111/j.1365-2958.2004.04373.x.

Abstract

The pleuromutilin antibiotic tiamulin binds to the ribosomal peptidyl transferase centre. Three groups of Brachyspira spp. isolates with reduced tiamulin susceptibility were analysed to define resistance mechanisms to the drug. Mutations were identified in genes encoding ribosomal protein L3 and 23S rRNA at positions proximal to the peptidyl transferase centre. In two groups of laboratory-selected mutants, mutations were found at nucleotide positions 2032, 2055, 2447, 2499, 2504 and 2572 of 23S rRNA (Escherichia coli numbering) and at amino acid positions 148 and 149 of ribosomal protein L3 (Brachyspira pilosicoli numbering). In a third group of clinical B. hyodysenteriae isolates, only a single mutation at amino acid 148 of ribosomal protein L3 was detected. Chemical footprinting experiments show a reduced binding of tiamulin to ribosomal subunits from mutants with decreased susceptibility to the drug. This reduction in drug binding is likely the resistance mechanism for these strains. Hence, the identified mutations located near the tiamulin binding site are predicted to be responsible for the resistance phenotype. The positions of the mutated residues relative to the bound drug advocate a model where the mutations affect tiamulin binding indirectly through perturbation of nucleotide U2504.

摘要

截短侧耳素类抗生素泰妙菌素与核糖体肽基转移酶中心结合。对三组泰妙菌素敏感性降低的短螺旋体属分离株进行分析,以确定对该药物的耐药机制。在编码核糖体蛋白L3和23S rRNA且靠近肽基转移酶中心的位置发现了突变。在两组实验室筛选的突变体中,在23S rRNA的核苷酸位置2032、2055、2447、2499、2504和2572(大肠杆菌编号)以及核糖体蛋白L3的氨基酸位置148和149(柔毛短螺旋体编号)发现了突变。在第三组猪痢疾短螺旋体临床分离株中,仅在核糖体蛋白L3的氨基酸148处检测到单个突变。化学足迹实验表明,泰妙菌素与对该药物敏感性降低的突变体的核糖体亚基的结合减少。药物结合的这种减少可能是这些菌株的耐药机制。因此,在泰妙菌素结合位点附近鉴定出的突变预计是耐药表型的原因。突变残基相对于结合药物的位置支持一种模型,即突变通过扰动核苷酸U2504间接影响泰妙菌素结合。

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