polyene macrolactam

  • 文章类型: Journal Article
    多烯大分子内酰胺是一类特殊的天然产物,具有很大的多样性,独特的结构特征,和广泛的生物活性。在这里,从海绵相关细菌中公开了一种用于生物合成推定的大分子内酰胺的隐蔽基因簇,链霉菌sp.DSS69,通过基因组挖掘。整个生物合成基因簇的克隆和异源表达导致了韦德霉素的发现,具有23/5/6环骨架的多烯大内酰胺。负调节器,WdlO,和两个正调节器,WdlA和WdlB,参与调节weddellamycin的生产被解开。wdlA和wdlB的过表达和wdlO的缺失显著提高了weddellamycin的发酵滴度。值得注意的是,韦德霉素对包括MRSA在内的各种革兰氏阳性细菌显示出显着的抗菌活性,MIC值为0.10-0.83μg/mL,和抗白念珠菌的抗真菌活性,MIC值为3.33μg/mL。Wedellamycin还显示出对几种癌细胞系的细胞毒性,IC50值范围为2.07至11.50µM。
    Polyene macrolactams are a special group of natural products with great diversity, unique structural features, and a wide range of biological activities. Herein, a cryptic gene cluster for the biosynthesis of putative macrolactams was disclosed from a sponge-associated bacterium, Streptomyces sp. DSS69, by genome mining. Cloning and heterologous expression of the whole biosynthetic gene cluster led to the discovery of weddellamycin, a polyene macrolactam bearing a 23/5/6 ring skeleton. A negative regulator, WdlO, and two positive regulators, WdlA and WdlB, involved in the regulation of weddellamycin production were unraveled. The fermentation titer of weddellamycin was significantly improved by overexpression of wdlA and wdlB and deletion of wdlO. Notably, weddellamycin showed remarkable antibacterial activity against various Gram-positive bacteria including MRSA, with MIC values of 0.10-0.83 μg/mL, and antifungal activity against Candida albicans, with an MIC value of 3.33 μg/mL. Weddellamycin also displayed cytotoxicity against several cancer cell lines, with IC50 values ranging from 2.07 to 11.50 µM.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

       PDF(Pubmed)

  • 文章类型: Journal Article
    使用已建立的CRISPR-Cas介导的链霉菌基因组编辑技术,我们探索了玫瑰链霉菌中金霉素生物合成基因簇的组合生物合成潜力。Auroramycin是一种强效的抗MRSA多烯大内酰胺。此外,金霉素具有抗真菌活性,在结构相似的多烯大分子内酰胺中是独一无二的,如incednine和silvalactam。在这项工作中,我们采用不同的工程策略来靶向糖基化和酰化生物合成机制,在其最近阐明的生物合成途径。具有C-变异的金霉素类似物,N-甲基化,产生并表征了羟基化和延伸单元的掺入。通过比较五种类似物的生物活性谱,我们确定,独特的二糖基序是其抗菌生物活性所必需的。我们进一步证明了3,5-表-柠檬糖单位的C-甲基化,在结构相似的多烯大分子内酰胺中是独一无二的,是其抗真菌活性的关键。
    Using an established CRISPR-Cas mediated genome editing technique for streptomycetes, we explored the combinatorial biosynthesis potential of the auroramycin biosynthetic gene cluster in Streptomyces roseosporous. Auroramycin is a potent anti-MRSA polyene macrolactam. In addition, auroramycin has antifungal activities, which is unique among structurally similar polyene macrolactams, such as incednine and silvalactam. In this work, we employed different engineering strategies to target glycosylation and acylation biosynthetic machineries within its recently elucidated biosynthetic pathway. Auroramycin analogs with variations in C-, N- methylation, hydroxylation and extender units incorporation were produced and characterized. By comparing the bioactivity profiles of five of these analogs, we determined that unique disaccharide motif of auroramycin is essential for its antimicrobial bioactivity. We further demonstrated that C-methylation of the 3, 5-epi-lemonose unit, which is unique among structurally similar polyene macrolactams, is key to its antifungal activity.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

       PDF(Sci-hub)

       PDF(Pubmed)

  • 文章类型: Journal Article
    Actinosynnema is a small but well-known genus of actinomycetes for production of ansamitocin, the payload component of antibody-drug conjugates against cancers. However, the secondary metabolite production profile of Actinosynnema pretiosum ATCC 31565, the most famous producer of ansamitocin, has never been fully explored. Our antiSMASH analysis of the genomic DNA of Actinosynnema pretiosum ATCC 31565 revealed a NRPS-PKS gene cluster for polyene macrolactam. The gene cluster is very similar to gene clusters for mirilactam and salinilactam, two 26-membered polyene macrolactams from Actinosynnema mirum and Salinispora tropica, respectively. Guided by this bioinformatics prediction, we characterized a novel 26-membered polyene macrolactam from Actinosynnema pretiosum ATCC 31565 and designated it pretilactam. The structure of pretilactam was elucidated by a comprehensive analysis of HRMS, 1D and 2D-NMR, with absolute configuration of chiral carbons predicted bioinformatically. Pretilactam features a dihydroxy tetrahydropyran moiety, and has a hexaene unit and a diene unit as its polyene system. A preliminary antibacterial assay indicated that pretilactam is inactive against Bacillus subtilis and Candida albicans.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

       PDF(Sci-hub)

       PDF(Pubmed)

  • 文章类型: Journal Article
    Mycolic acid-containing bacteria (MACB) are known to activate cryptic natural product biosynthesis in co-cultures with actinobacteria. We cultured Actinosynnema mirum NBRC 14064, a producer of the mono-cyclic polyene macrolactam mirilactam A (6), with the MACB Tsukamurella pulmonis TP-B0596. As a result, three novel compounds (mirilactams C-E, 1-3) were produced in the co-culture conditions. Compounds 1-3 were likely derived from 6 by epoxidation and subsequent spontaneous cyclization. The chemical structures and stereochemistries of 1-3 were determined by spectroscopic analyses (NMR and MS), conformational searches in the optimized potentials for liquid simulations-3 (OPLS3) force field, and calculations of electronic circular dichroism (ECD).
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

    求助全文

公众号