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首页> 外文期刊>Veterinary Microbiology >23S rRNA and L22 ribosomal protein are involved in the acquisition of macrolide and lincosamide resistance in Mycoplasma capricolum subsp capricolum
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23S rRNA and L22 ribosomal protein are involved in the acquisition of macrolide and lincosamide resistance in Mycoplasma capricolum subsp capricolum

机译:23s rRNA和L22核糖体蛋白蛋白涉及通过在支原体亚胚胚胚胚胚核中采集的大环内酯和蛋白酰胺抗性

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Mycoplasma capricolum subsp. capricolum (Mcc) is one of the causative agents of contagious agalactia, and antimicrobial therapy is the most commonly applied measure to treat outbreaks of this disease. Macrolides and lincosamides bind specifically to nucleotides at domains II and V of the 23S rRNA. Furthermore, rplD and rplV genes encode ribosomal proteins L4 and L22, which are also implicated in the macrolide binding site. The aim of this work was to study the relationship between mutations in these genes and the acquisition of macrolide and lincosamide resistance in Mcc. For this purpose, in vitro selected resistant mutants and field isolates were studied. This study demonstrates the appearance of DNA point mutations at the 23S rRNA encoding genes (A2058G, A2059G and A2062C) and rplV gene (Ala89Asp) in association to high minimum inhibitory concentration values. Hence, it proves the importance of alterations in 23S rRNA domain V and ribosomal protein L22 as molecular mechanisms responsible for the acquisition of macrolide and lincosamide resistance in both field isolates and in vitro selected mutants. Moreover, these mutations enable us to provide an interpretative breakpoint of antimicrobial resistance for Mcc at MIC 0.8 mu g/ml.
机译:mycoplasma capricolum subsp。 Capricolum(MCC)是传染性阿拉米肌的致病药物之一,抗菌治疗是治疗这种疾病爆发的最常用的措施。大环内酯和林膦酰胺特异性地与23s rRNA的结构域II和V的核苷酸结合。此外,RPLD和RPLV基因编码核糖体蛋白L4和L22,其也涉及在大环内酯结合位点。这项工作的目的是研究这些基因突变与MCC中的大环内酯和朊病毒素的关系。为此,研究了体外选择的抗性突变体和野外分离物。该研究表明,在23S rRNA编码基因(A2058G,A2059G和A2062C)和RPLV基因(ALA89AsP)结合的高最小抑制浓度值的情况下表现出DNA点突变的外观。因此,它证明了23s rRNA结构域V和核糖体蛋白L22中的改变的重要性,作为负责在田间分离株和体外所选择的突变体中获取大环内酯和吲哚酰胺抗性的分子机制。此外,这些突变使我们能够为MIC0.8μg/ ml提供MCC的MCC的抗微生物抗性的解释性断裂点。

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