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An operon encoding enzymes for synthesis of a putative extracellular carbohydrate attenuates acquired vancomycin resistance in Streptomyces coelicolor

机译:操纵子编码合成假定的细胞外碳水化合物的酶可减弱天蓝色链霉菌中获得的万古霉素耐药性

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Actinomycete bacteria use polyprenol phosphate mannose as a lipid-linked sugar donor for extra-cytoplasmic glycosyl transferases that transfer mannose to cell envelope polymers, including glycoproteins and glycolipids. Strains of Streptomyces coelicolor with mutations in the gene ppm1, encoding polyprenol phosphate mannose synthase, and in pmt, encoding a protein O-mannosyltransferase, are resistant to phage ?C31 and have greatly increased susceptibility to some antibiotics, including vancomycin. In this work, second-site suppressors of the vancomycin susceptibility were isolated. The suppressor strains fell into two groups. Group 1 strains had increased resistance to vancomycin, teicoplanin and β-lactams, and had mutations in the two-component sensor regulator system encoded by vanSR, leading to upegulation of the vanSRJKHAX cluster. Group 2 strains only had increased resistance to vancomycin and these mostly had mutations in sco2592 or sco2593, genes that are derepressed in the presence of phosphate and are likely to be required for the synthesis of a phosphate-containing extracellular polymer. In some suppressor strains the increased resistance was only observed in media with limited phosphate (mimicking the phenotype of wild-type S. coelicolor), but two strains, DT3017_R21 (ppm1-vanR-) and DT3017_R15 (ppm1- sco2593-), retained resistance on media with high phosphate content. These results support the view that vancomycin resistance in S. coelicolor is a trade-off between mechanisms that confer resistance and at least one that interferes with resistance mediated through the sco2594-sco2593-sco2592 operon.
机译:放线菌细菌使用聚戊二烯磷酸磷酸甘露糖作为脂质连接的糖供体,用于胞外糖基转移酶,将甘露糖转移至包括糖蛋白和糖脂的细胞包膜聚合物。在编码聚丙烯酸酯磷酸甘露糖合酶的ppm1基因和编码蛋白O-甘露糖基转移酶的pmt中具有突变的天蓝色链霉菌菌株对噬菌体ΔC31具有抗性,并且对包括万古霉素在内的某些抗生素的敏感性大大提高。在这项工作中,分离出万古霉素敏感性的第二位抑制剂。抑制菌株分为两组。第1组菌株对万古霉素,替考拉宁和β-内酰胺类的耐药性增加,并且在由vanSR编码的两组分传感器调节系统中发生突变,从而导致vanSRJKHAX簇的上调。第2组菌株仅对万古霉素具有增强的抗性,并且大多数在sco2592或sco2593中具有突变,这些基因在存在磷酸盐的情况下会被抑制,并且可能是合成含磷酸盐的细胞外聚合物所必需的。在某些抑制菌株中,仅在磷酸盐含量有限(模仿野生型大肠杆菌的表型)的培养基中观察到了耐药性的提高,但两种菌株DT3017_R21(ppm1-vanR-)和DT3017_R15(ppm1- sco2593-)保留了耐药性在磷酸盐含量高的介质上。这些结果支持这样的观点,即天蓝色链霉菌中的万古霉素抗性是赋予抗性的机制与至少一种干扰通过sco2594-sco2593-sco2592操纵子介导的抗性的机制之间的折衷。

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