Chinenova T A, Biriukova I V, Voeĭkova T A, Emel'ianova L K, Klochkova O A, Sezonov G V, Lomovskaia N D
Genetika. 1990 Apr;26(4):636-47.
Data are presented on resistance of Streptomyces aureofaciens strain TB-633 FU--the producer of chlortetracycline (CTC) to autogenous antibiotics and a number of other antibiotics. It is demonstrated that resistance to CTC is specified by ctr genes of constitutive expression as well as by inducible genes. CTC and ethidium bromide may serve as efficient inductors of inducible ctr genes. The induction process is accompanied by increase in antibiotic biosynthesis level. Genes responsible for strain resistance to a number of macrolide antibiotics and thiostrepton are inducible and only function in the presence of appropriate antibiotics in the medium. The action of inducible mtr gene(s) is described in detail. The gene(s) simultaneously ensure increase in resistance to CTC and a number of macrolide antibiotics in the presence of exogenous inductors in media, such as both CTC and macrolide antibiotics. Mutants have been isolated which provide constitutive level of resistance to these antibiotics. A series of ctr and mtr mutants have increased CTC biosynthesis as compared to the initial level. Data on comparative analysis of the results obtained from hybridization of fragments of S. aureofaciens and S. rimosus DNAs to actI and actIII genes, responsible for polyketide synthases' synthesis, demonstrate that genes for CTC and OTC biosynthesis are situated on DNA fragments of similar size. This determines the strategy for cloning ctr and mtr genes as well as genes for CTC biosynthesis from S. aureofaciens.
本文展示了金色链霉菌TB - 633 FU(金霉素(CTC)的产生菌)对自身抗生素及其他多种抗生素的抗性数据。结果表明,对CTC的抗性由组成型表达的ctr基因以及诱导型基因决定。CTC和溴化乙锭可作为诱导型ctr基因的有效诱导剂。诱导过程伴随着抗生素生物合成水平的提高。负责菌株对多种大环内酯类抗生素和硫链丝菌肽抗性的基因是诱导型的,且仅在培养基中存在合适抗生素时发挥作用。详细描述了诱导型mtr基因的作用。该基因在培养基中存在外源性诱导剂(如CTC和大环内酯类抗生素)时,可同时确保对CTC和多种大环内酯类抗生素的抗性增加。已分离出对这些抗生素具有组成型抗性水平的突变体。与初始水平相比,一系列ctr和mtr突变体的金霉素生物合成有所增加。对金色链霉菌和龟裂链霉菌DNA片段与负责聚酮合酶合成的actI和actIII基因杂交结果的比较分析数据表明,金霉素和土霉素生物合成基因位于大小相似的DNA片段上。这决定了从金色链霉菌中克隆ctr和mtr基因以及金霉素生物合成基因的策略。