Literature DB >> 34784196

Genome-Guided Discovery of Highly Oxygenated Aromatic Polyketides, Saccharothrixins D-M, from the Rare Marine Actinomycete Saccharothrix sp. D09.

Qiyao Shen1,2, Guangzhi Dai1, Aiying Li1, Yang Liu1, Guannan Zhong1, Xiaoju Li3, Xiangmei Ren3, Haiyan Sui3, Jun Fu1, Nianzhi Jiao2, Youming Zhang1, Xiaoying Bian1, Haibo Zhou1.   

Abstract

Angucyclines and angucyclinones are aromatic polyketides with intriguing structures and therapeutic value. Genome mining of the rare marine actinomycete Saccharothrix sp. D09 led to the identification of a type II polyketide synthase biosynthetic gene cluster, sxn, which encodes several distinct subclasses of oxidoreductases, implying that this strain has the potential to produce novel polycyclic aromatic polyketides with unusual redox modifications. The "one strain-many compounds" (OSMAC) strategy and comparative metabolite analysis facilitated the discovery of 20 angucycline derivatives from the D09 strain, including six new highly oxygenated saccharothrixins D-I (1-6), four new glycosylated saccharothrixins J-M (7-10), and 10 known analogues (11-20). Their structures were elucidated based on detailed HRESIMS, NMR spectroscopic, and X-ray crystallographic analysis. With the help of gene disruption and heterologous expression, we proposed their plausible biosynthetic pathways. In addition, compounds 3, 4, and 8 showed antibacterial activity against Helicobacter pylori with MIC values ranging from 16 to 32 μg/mL. Compound 3 also revealed anti-inflammatory activity by inhibiting the production of NO with an IC50 value of 28 μM.

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Year:  2021        PMID: 34784196     DOI: 10.1021/acs.jnatprod.1c00617

Source DB:  PubMed          Journal:  J Nat Prod        ISSN: 0163-3864            Impact factor:   4.050


  1 in total

1.  Biochemical and structural insights of multifunctional flavin-dependent monooxygenase FlsO1-catalyzed unexpected xanthone formation.

Authors:  Chunfang Yang; Liping Zhang; Wenjun Zhang; Chunshuai Huang; Yiguang Zhu; Xiaodong Jiang; Wei Liu; Mengran Zhao; Bidhan Chandra De; Changsheng Zhang
Journal:  Nat Commun       Date:  2022-09-14       Impact factor: 17.694

  1 in total

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