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A genetic model to investigate drug-target interactions at the ribosomal decoding site

机译:在核糖体解码位点研究药物-靶标相互作用的遗传模型

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Recent advances in X-ray crystallography have greatly contributed to the understanding of the structural interactions between aminoglycosides and the ribosomal decoding site. Efforts to genetically probe the functional relevance of proposed drug-nucleotide contacts have in part been hampered by the presence of multiple rRNA operons in most bacteria. A derivative of the Gram-positive Mycobacterium smegmatis was rendered single rRNA operon allelic by means of gene inactivation techniques. In this system, genetic manipulation of the single chromosomal rRNA operon results in cells carrying homogeneous populations of mutant ribosomes. An exhaustive mutagenesis study of the ribosomal A site has been performed to define the importance of individual drug-nucleotide contacts. Mutational alterations in the M. smegmatis decoding site are discussed here, comparing the results with those obtained in other organisms. Implications for the selectivity of antimicrobial agents and for the fitness cost of resistance mutations are addressed.
机译:X射线晶体学的最新进展大大有助于理解氨基糖苷类和核糖体解码位点之间的结构相互作用。在大多数细菌中,多个rRNA操纵子的存在部分地阻碍了从基因上研究拟议的药物-核苷酸接触的功能相关性的努力。通过基因失活技术,使革兰氏阳性耻垢分枝杆菌的衍生物成为单个rRNA操纵子等位基因。在该系统中,对单个染色体rRNA操纵子的遗传操作导致细胞携带突变核糖体的同质群体。已经对核糖体A位点进行了详尽的诱变研究,以定义单个药物-核苷酸接触的重要性。本文讨论了耻垢分枝杆菌解码位点的突变,将结果与其他生物获得的结果进行了比较。解决了对抗菌剂选择性和抗性突变适应性成本的影响。

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