Specific and Multi‐Product Clade I and Clade IV Sesquiterpene Synthases Contribute to the Psilocybe cubensis Volatilome
Sebastian Schober, Lisa Dorfmann, Karl Walther, Felix Blei, A.r. Chadeayne, Markus Gressler, Stefan Bartram, Sarah E. O’connor, Dirk Hoffmeister
ChemBioChem April 1, 2026 DOI: 10.1002/cbic.70318 via OpenAlex
Summary
AI-generated from the abstractPsilocybe cubensis magic mushrooms produce not only the psychedelic psilocybin but also a range of sesquiterpenes, natural products that can modulate biological receptors. Five sesquiterpene synthases were characterized: CubF makes α-muurolol, CubG1 and CubG2 produce mainly epi-isozizaene and β-duprezianene, CubH yields dauca-4(11),8-diene, and CubI forms β-barbatene. Gas chromatography revealed that vegetative mycelium and fruiting bodies have different sesquiterpene profiles, with sterpurene prominent in mycelium and dauca-4(11),8-diene in fruiting bodies. This knowledge may help separate the pharmacological effects of whole magic mushrooms from those of pure psilocybin.
Study at a glance
| Characteristics | Experimental study Qualitative Peer reviewed |
|---|---|
| Population | Psilocybe cubensis enzymes and Aspergillus niger host; P. cubensis mycelium and fruiting bodies |
| Keywords | Sesquiterpene Clade Mycelium Secondary metabolite Terpenoid |
| Key finding | Five sesquiterpene synthases in Psilocybe cubensis produce distinct sesquiterpenes, with different profiles in mycelium versus fruiting bodies. |
Abstract
Apart from the psychedelic psilocybin, the metabolite spectrum of Psilocybe "magic mushrooms" comprises sesquiterpenes, a class of natural products known to exhibit receptor-modulating bioactivities. However, the composition of the sesquiterpene profile has largely remained an open question. Here, we report the characterization of five Psilocybe cubensis sesquiterpene synthases, both in vitro using recombinantly produced enzymes and in vivo in Aspergillus niger. CubF is a clade I α-muurolol synthase. The investigated clade IV synthases were the near-identical CubG1 and CubG2 synthases, which catalyze mainly epi-isozizaene and β-duprezianene formation. Furthermore, CubH and CubI were identified as primarily making dauca-4(11),8-diene and β-barbatene, respectively. Gas chromatographic analyses of the headspaces of P. cubensis vegetative mycelium and fruiting bodies showed qualitative and quantitative differences, with sterpurene being among the major compounds in mycelium and dauca-4(11),8-diene in fruiting bodies. This fundamental knowledge of the P. cubensis terpenome may help distinguish the pharmacological effects of magic mushrooms versus pure psilocybin.