个性化文献订阅>期刊> Biochemistry
 

Enzymatic Processing of Fumiquinazoline F: A Tandem Oxidative-Acylation Strategy for the Generation of Multicyclic Scaffolds in Fungal Indole Alkaloid Biosynthesis

  作者 Ames, BD; Liu, XY; Walsh, CT  
  选自 期刊  Biochemistry;  卷期  2010年49-39;  页码  8564-8576  
  关联知识点  
 

[摘要]

Aspergillus fumigatus Af293 is a known producer of quinazoline natural products, including the antitumor fumiquinazolines, of which the simplest member is fumiquinazoline F (FQF) with a 6-6-6 tricyclic core derived from anthranilic acid, tryptophan, and alanine. FQF is the proposed biological precursor to fumiquinazoline A (FQA) in which the pendant indole side chain has been modified via oxidative coupling of an additional molecule of alanine, yielding a fused 6-5-5 imidazoindolone. We recently identified fungal anthranilate-activating nonribosomal peptide synthetase (NRPS) domains- through bioinformatics approaches. One domain previously identified is part of the trimodular NRPS Af12080, which we predict is responsible for FQF formation. We now show that two adjacent A. fumigants ORFs, a monomodular NRPS All 2050 and a flavoprotein All 2060, are necessary and sufficient to convert FQF to FQA. All 2060 oxidizes the 2',3'-double bond of the indole side chain of FQF, and the three-domain NRPS All 2050 activates L-Ala as the adenylate, installs it as the pantetheinyl thioester on its carrier protein domain, and acylates the oxidized indole for subsequent intramolecular cyclization to create the 6-5-5 imidazolindolone of FQA. This work provides experimental validation of the fumiquinazoline biosynthetic cluster of A. fumigatus Af293 and describes an oxidative annulation biosynthetic strategy likely shared among several classes of polycyclic fungal alkaloids.

 
      被申请数(0)  
 

[全文传递流程]

一般上传文献全文的时限在1个工作日内