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首页> 外文期刊>Microbiology >An aberrant protein synthesis activity is linked with antibiotic overproduction in rpsL mutants of Streptomyces coelicolor A3(2)
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An aberrant protein synthesis activity is linked with antibiotic overproduction in rpsL mutants of Streptomyces coelicolor A3(2)

机译:异常的蛋白质合成活性与链霉菌突变体A3(2)的RPSL突变体中的抗生素过量有关。

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Certain mutations in the rpsL gene (encoding the ribosomal protein S12) activate or enhance antibiotic production in various bacteria. K88E and P91S rpsL mutants of Streptomyces coelicolor A3(2), with an enhanced actinorhodin production, were found to exhibit an aberrant protein synthesis activity. While a high level of this activity (as determined by the incorporation of labelled leucine) was detected at the late stationary phase in the mutants, it decreased with age of the cells in the wild-type strain. In addition, the aberrant protein synthesis was particularly pronounced when cells were subjected to amino acid shift-down, and was independent of their ability to accumulate ppGpp. Ribosomes of K88E and P91S mutants displayed an increased accuracy in protein synthesis as demonstrated by the poly(U)-directed cell-free translation system, but so did K43N, K43T, K43R and K88R mutants, which were streptomycin resistant but showed no effect on actinorhodin production. This eliminates the possibility that the increased accuracy level is a cause of the antibiotic overproduction in the K88E and P91S mutants. The K88E and P91S mutant ribosomes exhibited an increased stability of the 70S complex under low concentrations of magnesium. The authors propose that the aberrant activation of protein synthesis caused by the increased stability of the ribosome is responsible for the remarkable enhancement of antibiotic production in the K88E and P91S mutants.
机译:RPS1基因中的某些突变(编码核糖体蛋白S12)在各种细菌中活化或增强抗生素产生。 K88E和P91S RPSL刚性链霉菌A3(2)的RPS1突变体,发现具有增强的Actinorhodin产生,含有异常蛋白质合成活性。虽然在突变体中的晚期固定阶段检测到高水平的该活动(如掺入标记的亮氨酸),但它随着野生型菌株中的细胞年龄而降低。此外,当细胞对氨基酸移位时,异常蛋白质合成特别明显,并且与其积累PPGPP的能力无关。 K88E和P91S突变体的核糖体在蛋白质合成中显示出提高的蛋白质合成的精度,如聚(U) - 一个无细胞翻译系统所证明的,但K43N,K43T,K43R和K88R突变体也是抗链霉素的抗性但没有对Actinorhodin生产。这消除了提高的准确度水平是K88E和P91S突变体中抗生素过量产生的原因。 K88E和P91S突变体核糖体在低浓度的镁下表现出70s复合物的稳定性增加。作者提出,由于核糖体稳定性增加引起的蛋白质合成的异常活化是患K88E和P91S突变体中抗生素产生的显着增强。

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