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首页> 外文期刊>Applied Microbiology and Biotechnology >Titer improvement of iso-migrastatin in selected heterologous Streptomyces hosts and related analysis of mRNA expression by quantitative RT-PCR
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Titer improvement of iso-migrastatin in selected heterologous Streptomyces hosts and related analysis of mRNA expression by quantitative RT-PCR

机译:定量异源链霉菌宿主中异米格他汀的滴度改善及定量RT-PCR对mRNA表达的相关分析

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iso-Migrastatin (iso-MGS) has been actively pursued recently as an outstanding candidate of antimetastasis agents. Having characterized the iso-MGS biosynthetic gene cluster from its native producer Streptomyces platensis NRRL 18993, we have recently succeeded in producing iso-MGS in five selected heterologous Streptomyces hosts, albeit the low titers failed to meet expectations and cast doubt on the utility of this novel technique for large-scale production. To further explore and capitalize on the production capacity of these hosts, a thorough investigation of these five engineered strains with three fermentation media for iso-MGS production was undertaken. Streptomyces albus J1074 and Streptomyces lividans K4-114 were found to be preferred heterologous hosts, and subsequent analysis of carbon and nitrogen sources revealed that sucrose and yeast extract were ideal for iso-MGS production. After the initial optimization, the titers of iso-MGS in all five hosts were considerably improved by 3-18-fold in the optimized R2YE medium. Furthermore, the iso-MGS titer of S. albus J1074 (pBS11001) was significantly improved to 186.7 mg/L by a hybrid medium strategy. Addition of NaHCO _3 to the latter finally afforded an optimized iso-MGS titer of 213.8 mg/L, about 5-fold higher than the originally reported system. With S. albus J1074 (pBS11001) as a model host, the expression of iso-MGS gene cluster in four different media was systematically studied via the quantitative RT-PCR technology. The resultant comparison revealed the correlation of gene expression and iso-MGS production for the first time; synchronous expression of the whole gene cluster was crucial for optimal iso-MGS production. These results reveal new insights into the iso-MGS biosynthetic machinery in heterologous hosts and provide the primary data to realize large-scale production of iso-MGS for further preclinical studies.
机译:近年来,iso-Migrastatin(iso-MGS)已成为抗转移药物的杰出候选者。从其天然生产者plateptomyces platensis NRRL 18993获得了iso-MGS生物合成基因簇的特征后,我们最近成功地在五种选定的异源链霉菌宿主中生产了iso-MGS,尽管其低滴度未能达到预期,并对其用途产生了怀疑。大规模生产的新技术。为了进一步探索和利用这些宿主的生产能力,对这三种经过工程改造的菌株以及三种发酵培养基进行了iso-MGS的生产进行了深入研究。发现白色链霉菌J1074和青色链霉菌K4-114是优选的异源宿主,随后对碳源和氮源的分析表明,蔗糖和酵母提取物是生产异MGS的理想选择。最初的优化后,在优化的R2YE培养基中,所有五种宿主中iso-MGS的效价均显着提高了3-18倍。此外,通过混合培养基策略,白色链球菌J1074(pBS11001)的iso-MGS滴度显着提高至186.7 mg / L。最终将NaHCO_3添加到后者中得到的优化的iso-MGS滴度为213.8 mg / L,比最初报道的系统高约5倍。以S. albus J1074(pBS11001)为模型宿主,通过定量RT-PCR技术系统研究了iso-MGS基因簇在四种不同培养基中的表达。结果比较首次揭示了基因表达与iso-MGS产生的相关性。整个基因簇的同步表达对于优化iso-MGS的生产至关重要。这些结果揭示了异源宿主中iso-MGS生物合成机制的新见解,并提供了实现大规模生产iso-MGS的基础数据,以进行进一步的临床前研究。

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