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Discovery and Biosynthesis of Cihunamides, Macrocyclic Antibacterial RiPPs with a Unique C-N Linkage Formed by CYP450 Catalysis

Cited 19 time in Web of Science Cited 19 time in Scopus
Authors

An, Joon Soo; Lee, Hyunbin; Kim, Hyungyu; Woo, Seungyeon; Nam, Hyunsung; Lee, Jayho; Lee, Ji Yun; Nam, Sang-Jip; Lee, Sang Kook; Oh, Ki-Bong; Kim, Seok Hee; Oh, Dong Chan

Issue Date
2023-06
Publisher
John Wiley & Sons Ltd.
Citation
Angewandte Chemie International Edition, Vol.62 No.26, p. 2023100998
Abstract
Cihunamides A-D (1-4), novel antibacterial RiPPs, were isolated from volcanic-island-derived Streptomyces sp. The structures of 1-4 were elucidated by H-1, C-13, and N-15 NMR, MS, and chemical derivatization; they contain a tetrapeptide core composed of WNIW, cyclized by a unique C-N linkage between two Trp units. Genome mining of the producer strain revealed two biosynthetic genes encoding a cytochrome P450 enzyme and a precursor peptide. Heterologous co-expression of the core genes demonstrated the biosynthesis of cihunamides through P450-mediated oxidative Trp-Trp cross-linking. Further bioinformatic analysis uncovered 252 homologous gene clusters, including that of tryptorubins, which possess a distinct Trp-Trp linkage. Cihunamides do not display the non-canonical atropisomerism shown in tryptorubins, which are the founding members of the "atropitide" family. Therefore, we propose to use a new RiPP family name, "bitryptides", for cihunamides, tryptorubins, and their congeners, wherein the Trp-Trp linkages define the structural class rather than non-canonical atropisomerism.
ISSN
1433-7851
URI
https://hdl.handle.net/10371/205269
DOI
https://doi.org/10.1002/anie.202300998
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  • College of Pharmacy
  • Department of Manufacturing Pharmacy
Research Area Chemical biology of natural products, Drug discovery from microbial natural products, Study of insect-microbial symbiosis, 미생물 유래 생리활성 천연물 발굴, 천연물 구조 분석

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