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Identification of a Novel Lincomycin Resistance Mutation Associated with Activation of Antibiotic Production in Streptomyces coelicolor A3(2)

机译:鉴定与链霉菌的抗生素生产激活有关的新型林霉素抗突变,Coelicolor A3(2)

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摘要

Comparative genome sequencing analysis of a lincomycin-resistant strain of Streptomyces coelicolor A3(2) and the wild-type strain identified a novel mutation conferring a high level of lincomycin resistance. Surprisingly, the new mutation was an in-frame DNA deletion in the genes SCO4597 and SCO4598, resulting in formation of the hybrid gene linR. SCO4597 and SCO4598 encode two histidine kinases, which together with SCO4596, encoding a response regulator, constitute a unique two-component system. Sequence analysis indicated that these three genes and their arrangement patterns are ubiquitous among all Streptomyces genomes sequenced to date, suggesting these genes play important regulatory roles. Gene replacement showed that this mutation was responsible for the high level of lincomycin resistance, the overproduction of the antibiotic actinorhodin, and the enhanced morphological differentiation of this strain. Moreover, heterologous expression of the hybrid gene linR in Escherichia coli conferred resistance to lincomycin in this organism. Introduction of the hybrid gene linR in various Streptomyces strains by gene engineering technology may widely activate and/or enhance antibiotic production.
机译:抗链霉素抗链霉素A3(2)和野生型菌株的临床基因组测序分析鉴定了一种赋予高水平的林胞菌抗性的新型突变。令人惊讶的是,新的突变是在SCO4597和SCO4598基因中的框架内DNA缺失,导致形成杂种基因LINR。 SCO4597和SCO4598编码两个组氨酸激酶,其与SCO4596一起编码响应调节器,构成了独特的双组分系统。序列分析表明,这些三种基因及其排列模式在迄今为止测序的所有链霉菌基因组中普遍存在,表明这些基因起着重要的调节作用。基因替代表明,这种突变对林胞菌抗性的高水平抗性,抗生素Actinorhodin的过度生产以及该菌株的增强形态分化。此外,在大肠杆菌中的杂合基因LinR的异源表达赋予该生物体中的林霉素抗性。通过基因工程技术引入各种链霉菌菌株中的杂种基因LINR可能广泛激活和/或增强抗生素生产。

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