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进化枝III合酶为裸盖菇代谢组添加环状和线性萜类化合物。

Clade III Synthases Add Cyclic and Linear Terpenoids to the Psilocybe Metabolome.

作者信息

Zschoche Nick, Schober Sebastian, Walther Karl, Chadeayne Andrew R, Gressler Markus, Bartram Stefan, O'Connor Sarah E, Hoffmeister Dirk

机构信息

Pharmaceutical Microbiology, Friedrich Schiller University, Beutenbergstrasse 11a, 07745, Jena, Germany.

CaaMTech, LLC, 58 East Sunset Way, Issaquah, WA 98027, USA.

出版信息

Chembiochem. 2025 Jul 11;26(13):e202500167. doi: 10.1002/cbic.202500167. Epub 2025 Jun 4.

Abstract

Psilocybe "magic mushrooms" are best known for their indolethylamine psilocybin, yet they encode enzymes for a much more diverse arsenal of small and potentially bioactive molecules. Herein, four Psilocybe cubensis clade III sesquiterpene synthases, CubB-CubE, whose genes are differently expressed in fruiting bodies compared to vegetative mycelium are reported. CubB-CubE were functionally characterized in vitro by product formation assays with heterologously produced enzymes and in vivo by transgene expression in Aspergillus niger, followed by extensive gas chromatography-mass spectrometry analyzes. CubB was identified as a single product (3R,6E)-(-)-nerolidol synthase. CubC is a multiproduct enzyme producing β-caryophyllene, β-elemene, α-humulene, and β-farnesene. CubD and CubE catalyze (near-)exclusively sterpurene formation. P. cubensis young fruiting bodies and vegetative mycelium were analyzed for sesquiterpenes, which verified the presence of the CubB product α-(3R,6E)-(-)-nerolidol. As various Psilocybe species encode highly similar enzymes, this study contributes generally to the as-yet little-understood secondary metabolome of the genus.

摘要

裸盖菇属“神奇蘑菇”因含有吲哚乙胺类的裸盖菇素而广为人知,然而它们还编码了用于合成更多种类的小分子且可能具有生物活性的分子的酶。本文报道了四种古巴裸盖菇进化枝III倍半萜合酶CubB - CubE,其基因在子实体中的表达与营养菌丝体不同。通过对异源产生的酶进行产物形成分析在体外对CubB - CubE进行了功能表征,并通过在黑曲霉中的转基因表达在体内进行了表征,随后进行了广泛的气相色谱 - 质谱分析。CubB被鉴定为单一产物(3R,6E)-(-)-橙花叔醇合酶。CubC是一种多产物酶,可产生β-石竹烯、β-榄香烯、α-葎草烯和β-法呢烯。CubD和CubE(几乎)只催化sterpurene的形成。对古巴裸盖菇的幼嫩子实体和营养菌丝体进行了倍半萜分析,证实了CubB产物α-(3R,6E)-(-)-橙花叔醇的存在。由于各种裸盖菇属物种编码高度相似的酶,本研究总体上有助于了解该属尚未被充分理解的次生代谢组。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/10f5/12247026/8497ab5e42a9/CBIC-26-e202500167-g005.jpg

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