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在抗生素链霉菌(产生该抗生素的生物体)中,细胞内糖基化和主动外排作为对竹桃霉素耐药的机制。

Intracellular glycosylation and active efflux as mechanisms for resistance to oleandomycin in Streptomyces antibioticus, the producer organism.

作者信息

Salas J A, Hernández C, Méndez C, Olano C, Quirós L M, Rodríguez A M, Vilches C

机构信息

Departamento de Biología Funcional, Universidad de Oviedo.

出版信息

Microbiologia. 1994 Mar-Jun;10(1-2):37-48.

PMID:7946126
Abstract

Resistance to macrolides in producing organisms can be achieved by target site modification, intracellular inactivation of the antibiotic or active efflux mechanisms for the excretion of the antibiotic. The oleandomycin producer, Streptomyces antibioticus, possesses oleandomycin-sensitive ribosomes all along the cell cycle. However, it contains an intracellular glycosyltransferase capable of inactivating oleandomycin in the presence of UDP-glucose as cofactor. The correspondent gene (oleD) has been cloned and sequenced and the glycosyltransferase purified. Two other genes (oleB and oleC) that confer oleandomycin resistance have been cloned and characterized and both encode ABC (ATP-Binding Cassette) transporters. These may constitute the excretion mechanism throughout which the glycosylated oleandomycin is excreted. A second enzyme activity has been purified from culture supernatants of the oleandomycin producer that releases the glucose from the inactive glycosylated oleandomycin generating active antibiotic. This enzyme would probably catalyse the last step in the biosynthesis of oleandomycin.

摘要

产生菌对大环内酯类抗生素的耐药性可通过靶位点修饰、抗生素的细胞内失活或抗生素排泄的主动外排机制来实现。竹桃霉素产生菌抗生素链霉菌在整个细胞周期中都具有对竹桃霉素敏感的核糖体。然而,它含有一种细胞内糖基转移酶,在UDP-葡萄糖作为辅因子存在的情况下能够使竹桃霉素失活。相应的基因(oleD)已被克隆和测序,并且该糖基转移酶已被纯化。另外两个赋予竹桃霉素抗性的基因(oleB和oleC)已被克隆和表征,并且两者都编码ABC(ATP结合盒)转运蛋白。这些可能构成糖基化竹桃霉素被排泄的排泄机制。已从竹桃霉素产生菌的培养上清液中纯化出第二种酶活性,该酶活性从无活性的糖基化竹桃霉素中释放葡萄糖,从而产生活性抗生素。这种酶可能催化竹桃霉素生物合成的最后一步。

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