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首页> 外文期刊>ACS Chemical Biology >Unique Biosynthetic Pathway in Bloom-Forming Cyanobacterial Genus Microcystis Jointly Assembles Cytotoxic Aeruginoguanidines and Microguanidines
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Unique Biosynthetic Pathway in Bloom-Forming Cyanobacterial Genus Microcystis Jointly Assembles Cytotoxic Aeruginoguanidines and Microguanidines

机译:盛开的蓝藻属植物中独特的生物合成途径,微囊杆菌共同组装细胞毒性铜绿素和微生物

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摘要

The cyanobacterial genus Microcystis is known to produce an elaborate array of structurally unique and biologically active natural products, including hazardous cyanotoxins. Cytotoxic aeruginoguanidines represent a yet unexplored family of peptides featuring a trisubstituted benzene unit and farnesylated arginine derivatives. In this study, we aimed at assigning these compounds to a biosynthetic gene cluster by utilizing biosynthetic attributes deduced from public genomes of Microcystis and the sporadic distribution of the metabolite in axenic strains of the Pasteur Culture Collection of Cyanobacteria. By integrating genome mining with untargeted metabolomics using liquid chromatography with mass spectrometry, we linked aeruginoguanidine (AGD) to a nonribosomal peptide synthetase gene cluster and coassigned a significantly smaller product to this pathway, microguanidine (MGD), previously only reported from two Microcystis blooms. Further, a new intermediate class of compounds named microguanidine amides was uncovered, thereby further enlarging this compound family. The comparison of structurally divergent AGDs and MGDs reveals an outstanding versatility of this biosynthetic pathway and provides insights into the assembly of the two compound subfamilies. Strikingly, aeruginoguanidines and microguanidines were found to be as widespread as the hepatotoxic microcystins, but the occurrence of both toxin families appeared to be mutually exclusive.
机译:已知蓝细菌属族基团微囊杆菌在包括危险的氰松辛的结构独特和生物活性天然产物的精细化的结构阵列。细胞毒性铜绿素多胍代表了一种尚未开发的肽家族,具有三取代的苯单元和法牛排化的精氨酸衍生物。在本研究中,我们旨在通过利用来自微囊杆菌的公共基因组和锥形培养收集的雄菌菌株中代谢物中代谢物的散发性分布来将这些化合物分配给生物合成基因簇。通过使用具有质谱法的液相色谱法将基因组开采与未结诊的代谢组学相结合,我们将铜替胍(AgD)连接到非纤维素肽合成酶基因簇,并将其与该途径的显着更小的产物,微生物植物(MGD)与两个微阴囊绽放仅报告。此外,发现了一种新的中等类化合物,称为微胍酰胺酰胺,从而进一步扩大该复合家族。结构性发散的AGD和MGDS的比较揭示了这种生物合成途径的优异功能性,并为两种复合亚壳的组装提供了洞察力。尖锐的是,铜绿素多胍和微生物被发现与肝毒性微胱素很广泛,但毒素家族的发生似乎是相互排斥的。

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  • 来源
    《ACS Chemical Biology》 |2019年第1期|共9页
  • 作者单位

    Inst Pasteur Collect Cyanobacteries 28 Rue Dr Roux F-75724 Paris 15 France;

    Hans Knoell Inst Leibniz Inst Nat Prod Res &

    Infect Biol Beutenbergstr 11a D-07745 Jena Germany;

    IFREMER Lab Phycotoxines Rue Ile Yeu F-44311 Nantes France;

    Univ Potsdam Inst Biochem &

    Biol Dept Microbiol D-14476 Golm Germany;

    Univ Potsdam Inst Biochem &

    Biol Dept Microbiol D-14476 Golm Germany;

    Univ Potsdam Inst Biochem &

    Biol Dept Microbiol D-14476 Golm Germany;

    Inst Pasteur Collect Cyanobacteries 28 Rue Dr Roux F-75724 Paris 15 France;

    Inst Pasteur Collect Cyanobacteries 28 Rue Dr Roux F-75724 Paris 15 France;

    Hans Knoell Inst Leibniz Inst Nat Prod Res &

    Infect Biol Beutenbergstr 11a D-07745 Jena Germany;

    Univ Potsdam Inst Biochem &

    Biol Dept Microbiol D-14476 Golm Germany;

    Inst Pasteur Collect Cyanobacteries 28 Rue Dr Roux F-75724 Paris 15 France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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