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首页> 外文期刊>Microbial Cell Factories >Characterization of the aurantimycin biosynthetic gene cluster and enhancing its production by manipulating two pathway-specific activators in Streptomyces aurantiacus JA 4570
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Characterization of the aurantimycin biosynthetic gene cluster and enhancing its production by manipulating two pathway-specific activators in Streptomyces aurantiacus JA 4570

机译:表征金霉素链菌素生物合成基因簇并通过操纵两种途径特异性激活剂增强金黄色链霉菌JA 4570中的产量

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Background Aurantimycin (ATM), produced by Streptomyces aurantiacus JA 4570, is a potent antimicrobial and antitumor antibiotic. Although the chemical structure of ATM is highly distinctive and features a cyclohexadepsipeptide scaffold attached with a C14 acyl side chain, little is known about its biosynthetic pathway and regulatory mechanism. Results In this work, we report the identification and characterization of the ATM biosynthetic gene cluster from S. aurantiacus JA 4570. Targeted inactivation of artG , coding for a NRPS enzyme, completely abolished ATM production, thereof demonstrating the target gene cluster ( art ) is responsible for ATM biosynthesis. Moreover, four NRPS adenylation (A) domains including a freestanding enzyme ArtC have been characterized in vitro, whose substrate specificities are consistent with in silico analysis. Further genetic analysis of the two regulatory genes artB and artX unambiguously suggested both of them play positive roles in ATM biosynthesis, and ATM-A production was thus rationally enhanced to about 2.5 fold via tandem overexpression of artB and artX in S. aurantiacus JA 4570. Conclusions These results will provide the basis for the understanding of precise mechanisms for ATM biosynthesis, and open the way for both rational construction of high-production ATM producer and orient-directed generation of designer ATM derivatives via synthetic biology strategies.
机译:背景技术由Aurantiacus JA 4570链霉菌产生的Aurantimycin(ATM)是一种有效的抗微生物和抗肿瘤抗生素。尽管ATM的化学结构非常独特,并且具有连接有C 14 酰基侧链的环六肽肽支架,但对其生物合成途径和调控机制知之甚少。结果在这项工作中,我们报告了从金黄色葡萄球菌JA 4570鉴定ATM生物合成基因簇的鉴定和表征。artG的靶向失活,编码NRPS酶,完全废除了ATM的产生,表明其靶基因簇是(art)。负责ATM的生物合成。此外,已在体外对包括独立酶ArtC在内的四个NRPS腺苷酸(A)域进行了表征,其底物特异性与计算机分析相符。对两个调节基因artB和artX的进一步遗传分析明确表明,它们在ATM生物合成中均发挥积极作用,因此通过在金黄色葡萄球菌JA 4570中串联artB和artX的过表达,ATM-A的产量被合理地提高了约2.5倍。结论这些结果将为理解ATM生物合成的精确机制提供基础,并为通过合成生物学策略合理构建高产ATM生产者和定向生成设计ATM衍生物开辟道路。

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