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Structural and Computational Insights into the Noncanonical Aromatization in Fungal Polyketide Biosynthesis

  • Hang Wang (Co-first Author)
  • , Chao Peng (Co-first Author)
  • , Xiao-Xuan Chen (Co-first Author)
  • , Hao-Yang Wang
  • , Run Yang
  • , Hao Xiang
  • , Qiu-Fen Hu
  • , Ling Liu
  • , Lung Wa Chung*
  • , Yudai Matsuda*
  • , Wei-Guang Wang*
  • *Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

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Abstract

Aromatic polyketides, with their diverse structures and biological activities, have attracted significant scientific interest. Aromatization reactions are typically performed by aromatases and cyclases associated with bacterial type II polyketide synthases (PKSs) or product template and Claisen cyclase domains found in fungal type I nonreducing PKSs. Intriguingly, our recent study discovered a noncanonical aromatization mechanism involving a cupin domain-containing enzyme, StrC, in fungal alkyl salicylaldehyde derivative biosynthesis. Nevertheless, the catalytic function of StrC largely remained enigmatic. In this study, an in-depth in vitro characterization of StrC was performed to gain a better understanding of the reaction mechanism for aromatization. In addition, the X-ray crystal structure of StrC in the complex with a substrate analogue was obtained to elucidate the unique active site. Subsequent mutational experiments identified important amino acid residues for aromatase activity. Furthermore, a quantum mechanics study provided a plausible reaction mechanism for aromatization and highlighted the vital role of StrC in the biosynthetic process. Thus, our study unveils an unknown paradigm for aromatization in polyketide biosynthesis. © 2024 American Chemical Society
Original languageEnglish
Pages (from-to)10796-10805
JournalACS Catalysis
Volume14
Issue number14
Online published3 Jul 2024
DOIs
Publication statusPublished - 19 Jul 2024

Funding

We are grateful to Prof. Katsuya Gomi (Tohoku University) and Prof. Jun-ichi Maruyama (The University of Tokyo) for kindly providing the expression vectors and the fungal strain. We thank Dr. Xudong Qu (Shanghai Jiao Tong University) for his valuable suggestions on the experimental design. We are grateful to the staff at beamlines BL17U1 and BL19U1 of the Shanghai Synchrotron Radiation Facility for their assistance during data collection. This work was supported by grants from the National Natural Science Foundation of China (project nos. 22377105, 21907083, 21933003, 22193020, 22193023, 32022002, and 21977113), grants from the National Natural Science Foundation of Yunnan Province and Jiangsu Province (nos. 202101AS070022, 202401AV070003, and BK20210434), the Yunnan Ten-thousand Talents Program to W.-G.W., the General Research Fund grant (Project no. 11301321) from the Research Grants Council (RGC) of Hong Kong, the Shenzhen Nobel Prize Scientists Laboratory Project (C17783101), and the Guangdong Provincial Key Laboratory of Catalytic Chemistry (2020B121201002). We thank the Center for Computational Science and Engineering at the Southern University of Science and Technology and CHEM HPC at SUSTech for partly supporting this work.

Research Keywords

  • natural products
  • biosynthesis
  • polyketides
  • aromatases
  • cupin domain-containing enzymes

Publisher's Copyright Statement

  • COPYRIGHT TERMS OF DEPOSITED POSTPRINT FILE: This document is the Accepted Manuscript version of a Published Work that appeared in final form in ACS Catalysis, copyright © 2024 American Chemical Society after peer review and technical editing by the publisher. To access the final edited and published work see https://doi.org/10.1021/acscatal.4c01043.

RGC Funding Information

  • RGC-funded

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