首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Resistance to the macrolide antibiotic tylosin is conferred by single methylations at 23S rRNA nucleotides G748 and A2058 acting in synergy
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Resistance to the macrolide antibiotic tylosin is conferred by single methylations at 23S rRNA nucleotides G748 and A2058 acting in synergy

机译:对大环内酯类抗生素泰乐菌素的耐药性是由23S rRNA核苷酸G748和A2058的单甲基化协同作用赋予的

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The macrolide antibiotic tylosin has been used extensively in veterinary medicine and exerts potent antimicrobial activity against Gram-positive bacteria. Tylosin-synthesizing strains of the Gram-positive bacterium Streptomyces fradiae protect themselves from their own product by differential expression of four resistance determinants, tlrA, tlrB, tlrC, and tlrD. The tlrB and tlrD genes encode methyltransferases that add single methyl groups at 235 rRNA nucleotides G748 and A2058, respectively. Here we show that methylation by neither TlrB nor TlrD is sufficient on its own to give tylosin resistance, and resistance is conferred by the G748 and A2058 methylations acting together in synergy. This synergistic mechanism of resistance is specific for the macrolides tylosin and mycinamycin that possess sugars extending from the 5- and 14-positions of the macrolactone ring and is not observed for macrolides, such as carbomycin, spiramycin, and erythromycin, that have different constellations of sugars. The manner in which the G748 and A2058 methylations coincide with the glycosylation patterns of tylosin and mycinamycin reflects unambiguously how these macrolides fit into their binding site within the bacterial 50S ribosomal subunit.
机译:大环内酯类抗生素泰乐菌素已在兽医学中广泛使用,并且对革兰氏阳性菌具有强大的抗菌活性。革兰氏阳性细菌弗拉特链霉菌的泰乐菌素合成菌株通过四种抗性决定簇tlrA,tlrB,tlrC和tlrD的差异表达来保护自己免受自身产物的侵害。 tlrB和tlrD基因编码甲基转移酶,分别在235个rRNA核苷酸G748和A2058处添加单个甲基。在这里,我们表明,无论是TlrB还是TlrD甲基化都不足以赋予泰乐菌素抗性,而G748和A2058甲基化协同发挥作用赋予了抗性。这种抗药性的协同作用机制对大环内酯泰乐菌素和霉素具有特异性,这些糖具有从大内酯环的5和14位延伸的糖,而对于大环内酯类(如卡波霉素,螺旋霉素和红霉素)则没有观察到,糖。 G748和A2058甲基化与泰乐菌素和霉素霉素的糖基化模式相吻合的方式明确反映了这些大环内酯类化合物如何嵌入细菌50S核糖体亚基内的结合位点。

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