Long Katherine S, Poehlsgaard Jacob, Hansen Lykke H, Hobbie Sven N, Böttger Erik C, Vester Birte
Department of Biology, University of Copenhagen, Ole Maaløes Vej 5, DK-2200 Copenhagen N, Denmark.
Mol Microbiol. 2009 Mar;71(5):1218-27. doi: 10.1111/j.1365-2958.2009.06596.x. Epub 2009 Jan 16.
Tiamulin and valnemulin target the peptidyl transferase centre (PTC) on the bacterial ribosome. They are used in veterinary medicine to treat infections caused by a variety of bacterial pathogens, including the intestinal spirochetes Brachyspira spp. Mutations in ribosomal protein L3 and 23S rRNA have previously been associated with tiamulin resistance in Brachyspira spp. isolates, but as multiple mutations were isolated together, the roles of the individual mutations are unclear. In this work, individual 23S rRNA mutations associated with pleuromutilin resistance at positions 2055, 2447, 2504 and 2572 (Escherichia coli numbering) are introduced into a Mycobacterium smegmatis strain with a single rRNA operon. The single mutations each confer a significant and similar degree of valnemulin resistance and those at 2447 and 2504 also confer cross-resistance to other antibiotics that bind to the PTC in M. smegmatis. Antibiotic footprinting experiments on mutant ribosomes show that the introduced mutations cause structural perturbations at the PTC and reduced binding of pleuromutilin antibiotics. This work underscores the fact that mutations at nucleotides distant from the pleuromutilin binding site can confer the same level of valnemulin resistance as those at nucleotides abutting the bound drug, and suggests that the former function indirectly by altering local structure and flexibility at the drug binding pocket.
替米考星和伐地考星作用于细菌核糖体上的肽基转移酶中心(PTC)。它们在兽医学中用于治疗由多种细菌病原体引起的感染,包括肠道螺旋体短螺旋体属(Brachyspira spp.)。核糖体蛋白L3和23S rRNA中的突变先前已与短螺旋体属分离株中的替米考星耐药性相关,但由于多个突变是一起分离出来的,单个突变的作用尚不清楚。在这项研究中,将与截短侧耳素耐药性相关的位于2055、2447、2504和2572位(大肠杆菌编号)的单个23S rRNA突变引入到具有单个rRNA操纵子的耻垢分枝杆菌菌株中。每个单突变都赋予了显著且相似程度的伐地考星耐药性,并且位于2447和2504位的突变还赋予了对耻垢分枝杆菌中与PTC结合的其他抗生素的交叉耐药性。对突变核糖体进行的抗生素足迹实验表明,引入的突变会导致PTC处的结构扰动,并降低截短侧耳素类抗生素的结合。这项研究强调了这样一个事实,即远离截短侧耳素结合位点的核苷酸突变可以赋予与紧邻结合药物的核苷酸突变相同水平的伐地考星耐药性,并表明前者通过改变药物结合口袋处的局部结构和灵活性间接发挥作用。