4.8 Article

Heterocyclic Aromatic N-Oxidation in the Biosynthesis of Phenazine Antibiotics from Lysobacter antibioticus

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ORGANIC LETTERS
卷 18, 期 10, 页码 2495-2498

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acs.orglett.6b01089

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资金

  1. NIH [R01A1097260]
  2. NSFC [31329005, 31371981, 31572046]
  3. National Basic Research (973) program of China [2015CB150600]
  4. Jiangsu Provincal Key Technology Support Program [BE2015354]
  5. China Scholarship Council

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Heterocyclic aromatic N-oxides often have potent biological activities, but the mechanism for aromatic N-oxidation is unclear. Six phenazine antibiotics were isolated from Lysobacter antibioticus OH13. A 10 gene cluster was identified for phenazine biosynthesis. Mutation of LaPhzNO1 abolished all N-oxides, while non-oxides markedly increased. LaPhzNO1 is homologous to Baeyer-Villiger flavoproteins but was shown to catazlye phenazine N-oxidation. LaPhzNO1 and LaPhzS together converted phenazine 1,6-dicarboxylic acid to 1,6-dihydroxyphenazine N5,N10-dioxide. LaPhzNO1 also catalyzed N-oxidation of 8-hydroxyquinoline.

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