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Innovative Approach for Improvement of an Antibiotic-Overproducing Industrial Strain of Streptomyces albus

机译:改进抗生素过度生产链霉菌的工业菌株的创新途径。

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摘要

Working with a Streptomyces albus strain that had previously been bred to produce industrial amounts (10 mg/ml) of salinomycin, we demonstrated the efficacy of introducing drug resistance-producing mutations for further strain improvement. Mutants with enhanced salinomycin production were detected at a high incidence (7 to 12%) among spontaneous isolates resistant to streptomycin (Strr), gentamicin, or rifampin (Rifr). Finally, we successfully demonstrated improvement of the salinomycin productivity of the industrial strain by 2.3-fold by introducing a triple mutation. The Strr mutant was shown to have a point mutation within the rpsL gene (encoding ribosomal protein S12). Likewise, the Rifr mutant possessed a mutation in the rpoB gene (encoding the RNA polymerase β subunit). Increased productivity of salinomycin in the Strr mutant (containing the K88R mutation in the S12 protein) may be a result of an aberrant protein synthesis mechanism. This aberration may manifest itself as enhanced translation activity in stationary-phase cells, as we have observed with the poly(U)-directed cell-free translation system. The K88R mutant ribosome was characterized by increased 70S complex stability in low Mg2+ concentrations. We conclude that this aberrant protein synthesis ability in the Strr mutant, which is a result of increased stability of the 70S complex, is responsible for the remarkable salinomycin production enhancement obtained.
机译:与先前已被饲养以生产工业量(10 mg / ml)的盐霉素的白色链霉菌菌株一起工作,我们证明了将产生耐药性的突变引入菌株进一步改良的功效。在对链霉素(Str r ),庆大霉素或利福平(Rif r )有抵抗力的自发分离株中,检出沙利霉素霉素产量增加的突变体的发生率很高(7%至12%)。 。最后,我们通过引入三重突变成功地证明了该工业菌株的盐霉素生产能力提高了2.3倍。结果表明,Str r 突变体在rpsL基因(编码核糖体蛋白S12)中具有点突变。同样,Rif r 突变体在rpoB基因中具有突变(编码RNA聚合酶β亚基)。 Str r 突变体(在S12蛋白中包含K88R突变)中沙利霉素的生产率提高可能是蛋白合成机制异常的结果。正如我们在poly(U)指导的无细胞翻译系统中所观察到的,这种畸变可能表现为固定相细胞中增强的翻译活性。 K88R突变体核糖体的特征是在低Mg 2 + 浓度下增加了70S复合物的稳定性。我们得出的结论是,Str r 突变体中这种异常的蛋白质合成能力是70S复合物稳定性提高的结果,这是所获得的显着增加的盐霉素生产的原因。

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