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首页> 外文期刊>Microbial Cell Factories >Genome mining of novel rubiginones from Streptomyces sp. CB02414 and characterization of the post-PKS modification steps in rubiginone biosynthesis
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Genome mining of novel rubiginones from Streptomyces sp. CB02414 and characterization of the post-PKS modification steps in rubiginone biosynthesis

机译:来自Streptomyces sp的新型茜素的基因组挖掘。 CB02414和Purs-PKS后修饰步骤的表征在茜素藻醌生物合成中

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Rubiginones belong to the angucycline family of aromatic polyketides, and they have been shown to potentiate the vincristine (VCR)-induced cytotoxicity against VCR-resistant cancer cell lines. However, the biosynthetic gene clusters (BGCs) and biosynthetic pathways for rubiginones have not been reported yet. In this study, based on bioinformatics analysis of the genome of Streptomyces sp. CB02414, we predicted the functions of the two type II polyketide synthases (PKSs) BGCs. The rub gene cluster was predicted to encode metabolites of the angucycline family. Scale-up fermentation of the CB02414 wild-type strain led to the discovery of eight rubiginones, including five new ones (rubiginones J, K, L, M, and N). Rubiginone J was proposed to be the final product of the rub gene cluster, which features extensive oxidation on the A-ring of the angucycline skeleton. Based on the production profiles of the CB02414 wild-type and the mutant strains, we proposed a biosynthetic pathway for the rubiginones in CB02414. A genome mining strategy enabled the efficient discovery of new rubiginones from Streptomyces sp. CB02414. Based on the isolated biosynthetic intermediates, a plausible biosynthetic pathway for the rubiginones was proposed. Our research lays the foundation for further studies on the mechanism of the cytochrome P450-catalyzed oxidation of angucyclines and for the generation of novel angucyclines using combinatorial biosynthesis strategies.
机译:Rubiginones属于芳族聚酮化合物的Angucycline系列,并且已经证明它们使长春杂细胞(VCR)引起过耐VCR抗性癌细胞系的细胞毒性。然而,尚未报道生物合成基因簇(BGCS)和用于茜素的生物合成途径。在本研究中,基于Bioinfinomatics Sp的基因组分析。 CB02414,我们预测了两种II型聚酮合成酶(PKSS)BGC的功能。预计摩擦基因簇以编码Angucycline系列的代谢物。 CB02414野生型菌株的扩大发酵导致了八个茜素的发现,包括五种新的毒剂(茜管油j,k,l,m和n)。茜素蛋白酶J被提出为摩擦基因簇的最终产物,其在Ancuc碳纤维骨架的A形环上具有广泛的氧化。基于CB02414野生型和突变菌株的生产型材,我们提出了CB02414中茜素的生物合成途径。基因组采矿策略使得从Streptomyces SP有效发现新的茜素。 CB02414。基于分离的生物合成中间体,提出了一种对茜素的合理性生物合成途径。我们的研究奠定了进一步研究了使用组合生物合成策略的细胞色素P450催化氧化机理的进一步研究和生成新型亚霉素的基础。

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