• Medientyp: E-Artikel
  • Titel: S‐Adenosyl‐l‐Methionine Salvage Impacts Psilocybin Formation in “Magic” Mushrooms
  • Beteiligte: Demmler, Richard; Fricke, Janis; Dörner, Sebastian; Gressler, Markus; Hoffmeister, Dirk
  • Erschienen: Wiley, 2020
  • Erschienen in: ChemBioChem, 21 (2020) 9, Seite 1364-1371
  • Sprache: Englisch
  • DOI: 10.1002/cbic.201900649
  • ISSN: 1439-4227; 1439-7633
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  • Beschreibung: AbstractPsychotropic Psilocybe mushrooms biosynthesize their principal natural product psilocybin in five steps, among them a phosphotransfer and two methyltransfer reactions, which consume one equivalent of 5′‐adenosine triphosphate (ATP) and two equivalents of S‐adenosyl‐l‐methionine (SAM). This short but co‐substrate‐intensive pathway requires nucleoside cofactor salvage to maintain high psilocybin production rates. We characterized the adenosine kinase (AdoK) and S‐adenosyl‐l‐homocysteine (SAH) hydrolase (SahH) of Psilocybe cubensis. Both enzymes are directly or indirectly involved in regenerating SAM. qRT‐PCR expression analysis revealed an induced expression of the genes in the fungal primordia and carpophores. A one‐pot in vitro reaction with the N‐methyltransferase PsiM of the psilocybin pathway demonstrates a concerted action with SahH to facilitate biosynthesis by removal of accumulating SAH.