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The Novel Aminomethylcycline Omadacycline Has High Specificity for the Primary Tetracycline-Binding Site on the Bacterial Ribosome

机译:新型氨基甲基环素Omadacycline对细菌核糖体上的主要四环素结合位点具有高特异性

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摘要

Omadacycline is an aminomethylcycline antibiotic with potent activity against many Gram-positive and Gram-negative pathogens, including strains carrying the major efflux and ribosome protection resistance determinants. This makes it a promising candidate for therapy of severe infectious diseases. Omadacycline inhibits bacterial protein biosynthesis and competes with tetracycline for binding to the ribosome. Its interactions with the 70S ribosome were, therefore, analyzed in great detail and compared with tigecycline and tetracycline. All three antibiotics are inhibited by mutations in the 16S rRNA that mediate resistance to tetracycline in Brachyspira hyodysenteriae, Helicobacter pylori, Mycoplasma hominis, and Propionibacterium acnes. Chemical probing with dimethyl sulfate and Fenton cleavage with iron(II)-complexes of the tetracycline derivatives revealed that each antibiotic interacts in an idiosyncratic manner with the ribosome. X-ray crystallography had previously revealed one primary binding site for tetracycline on the ribosome and up to five secondary sites. All tetracyclines analyzed here interact with the primary site and tetracycline also with two secondary sites. In addition, each derivative displays a unique set of non-specific interactions with the 16S rRNA.
机译:Omadacycline是一种氨基甲基环素抗生素,对许多革兰氏阳性和革兰氏阴性病原体具有有效活性,包括携带主要外排和核糖体保护抗性决定簇的菌株。这使其成为治疗严重传染病的有前途的候选人。 Omadacycline抑制细菌蛋白质的生物合成,并与四环素竞争与核糖体的结合。因此,对它与70S核糖体的相互作用进行了详细分析,并与替加环素和四环素进行了比较。三种抗生素均受到介导短螺旋体,幽门螺杆菌,人型支原体和痤疮丙酸杆菌中四环素抗性的16S rRNA突变的抑制。用硫酸二甲酯进行化学探测,用四环素衍生物的铁(II)-配合物进行芬顿裂解,发现每种抗生素都与核糖体相互作用。 X射线晶体学以前揭示了核糖体上一个四环素的主要结合位点,最多五个次要位点。此处分析的所有四环素都与主要位点相互作用,四环素也与两个次要位点相互作用。此外,每种衍生物均显示出与16S rRNA独特的一组非特异性相互作用。

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