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"大肠杆菌中混杂的裸盖菇素合成途径生物合成裸盖菇素及其非天然衍生物"。

"Biosynthesis of psilocybin and its nonnatural derivatives by a promiscuous psilocybin synthesis pathway in Escherichia coli".

机构信息

Department of Chemical, Paper, and Biomedical Engineering, Miami University, Oxford, Ohio, USA.

Department of Microbiology, Miami University, Oxford, Ohio, USA.

出版信息

Biotechnol Bioeng. 2023 Aug;120(8):2214-2229. doi: 10.1002/bit.28480. Epub 2023 Jun 20.

Abstract

Traditional psychedelics are undergoing a transformation from recreational drugs, to promising pharmaceutical drug candidates with the potential to provide an alternative treatment option for individuals struggling with mental illness. Sustainable and economic production methods are thus needed to facilitate enhanced study of these drug candidates to support future clinical efforts. Here, we expand upon current bacterial psilocybin biosynthesis by incorporating the cytochrome P450 monooxygenase, PsiH, to enable the de novo production of psilocybin as well as the biosynthesis of 13 psilocybin derivatives. The substrate promiscuity of the psilocybin biosynthesis pathway was comprehensively probed by using a library of 49 single-substituted indole derivatives, providing biophysical insights to this understudied metabolic pathway and opening the door to the in vivo biological synthesis of a library of previously unstudied pharmaceutical drug candidates.

摘要

传统迷幻剂正在从娱乐性药物向有前途的药物候选物转变,这些候选物有可能为患有精神疾病的人提供替代治疗选择。因此,需要可持续和经济的生产方法来促进对这些药物候选物的加强研究,以支持未来的临床努力。在这里,我们通过整合细胞色素 P450 单加氧酶 PsiH 来扩展当前的细菌裸盖菇素生物合成,从而能够从头生产裸盖菇素以及 13 种裸盖菇素衍生物的生物合成。通过使用 49 种单取代吲哚衍生物文库全面探测裸盖菇素生物合成途径的底物广谱性,为这个研究较少的代谢途径提供了生物物理见解,并为以前未研究过的药物候选物文库的体内生物合成开辟了道路。

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