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Improvement of Daptomycin Production in Streptomyces roseosporus through the Acquisition of Pleuromutilin Resistance

机译:通过获得对截短侧耳素的抗性,改善玫瑰孢链霉菌中达托霉素的生产

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摘要

Daptomycin, a cyclic lipopeptide antibiotic produced by Streptomyces roseosporus, displays potent activity against a variety of gram-positive pathogens. There is a demand for generating high-producing strains for industrial production of this valuable antibiotic. Ribosome engineering is a powerful strategy to enhance the yield of secondary metabolites. In this study, the effect of a diterpenoid antibiotic pleuromutilin resistance mutation on daptomycin production was assessed. Spontaneous pleuromutilin-resistant derivatives of S. roseosporus were isolated. Sequencing of rplC locus (encoding the ribosomal protein L3) showed a point mutation at nt 455, resulting in the substitution of glycine with valine. G152V mutants showed increased production of daptomycin by approximately 30% in comparison with the wild-type strain. Its effect on daptomycin production was due to enhanced gene transcription of the daptomycin biosynthetic genes. In conclusion, pleuromutilin could be used as a novel ribosome engineering agent to improve the production of desired secondary metabolites.
机译:达托霉素是一种由玫瑰链霉菌产生的环脂肽抗生素,对多种革兰氏阳性病原体均显示出强大的活性。需要产生高产菌株以用于这种有价值的抗生素的工业生产。核糖体工程是提高次生代谢产物产量的有力策略。在这项研究中,评估了二萜类抗生素截短侧耳素抗性突变对达托霉素生产的影响。分离出自发的玫瑰孢子菌对截短侧耳素抗性的衍生物。 rplC基因座(编码核糖体蛋白L3)的测序表明在nt 455有一个点突变,导致甘氨酸被缬氨酸取代。与野生型菌株相比,G152V突变体显示达托霉素的产量增加了约30%。它对达托霉素生产的影响是由于达托霉素生物合成基因的基因转录增强。总之,截短侧耳素可以用作新型核糖体工程剂,以改善所需次级代谢产物的产生。

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