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Structure and Biosynthesis of Isatropolones, Bioactive Amine-Scavenging Fluorescent Natural Products from Streptomyces Gö66.

Xiaofeng CaiYi-Ming ShiNicole PöhlmannOle RevermannIsabel BahnerSacha J PidotFrank WescheHelmut LacknerClaudia BüchelMarcel KaiserChristian RichterHarald SchwalbeTimothy P StinearAxel ZeeckHelge B Bode
Published in: Angewandte Chemie (International ed. in English) (2017)
The natural products isatropolone A-C (1-3) were reisolated from Streptomyces Gö66, with 1 and 3 showing potent activity against Leishmania donovani. They contain a rare tropolone ring derived from a type II polyketide biosynthesis pathway. Their biosynthesis was elucidated by labeling experiments, analysis of the biosynthesis gene cluster, its partial heterologous expression, and structural characterization of various intermediates. Owing to their 1,5-diketone moiety, they can react with ammonia, amines, lysine, and lysine-containing peptides and proteins, which results in the formation of a covalent bond and subsequent pyridine ring formation. Their fluorescence properties change upon amine binding, enabling the simple visualization of reacted amines including proteins.
Keyphrases
  • cell wall
  • poor prognosis
  • amino acid
  • quantum dots
  • gene expression
  • binding protein
  • single molecule
  • dna methylation
  • saccharomyces cerevisiae
  • transition metal