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Discovery of Terminal Oxazole-Bearing Natural Products by a Targeted Metabologenomic Approach

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Authors

Park, Jiyoon; Shin, Yern-Hyerk; Hwang, Sunghoon; Kim, Jungwoo; Moon, Dong Hyun; Kang, Ilnam; Ko, Yoon-Joo; Chung, Beomkoo; Nam, Hyungsung; Kim, Seok Hee; Moon, Kyuho; Oh, Ki-Bong; Cho, Jang-Cheon; Lee, Sang Kook; Oh, Dong Chan

Issue Date
2024-04
Publisher
John Wiley & Sons Ltd.
Citation
Angewandte Chemie International Edition, Vol.63 No.21, p. e202402465
Abstract
A targeted metabologenomic method was developed to selectively discover terminal oxazole-bearing natural products from bacteria. For this, genes encoding oxazole cyclase, a key enzyme in terminal oxazole biosynthesis, were chosen as the genomic signature to screen bacterial strains that may produce oxazole-bearing compounds. Sixteen strains were identified from the screening of a bacterial DNA library (1,000 strains) using oxazole cyclase gene-targeting polymerase chain reaction (PCR) primers. The PCR amplicon sequences were subjected to phylogenetic analysis and classified into nine clades. 1H-13C coupled-HSQC NMR spectra obtained from the culture extracts of the hit strains enabled the unequivocal detection of the target compounds, including five new oxazole compounds, based on the unique 1JCH values and chemical shifts of oxazole: lenzioxazole (1) possessing an unprecedented cyclopentane, permafroxazole (2) bearing a tetraene conjugated with carboxylic acid, tenebriazine (3) incorporating two modified amino acids, and methyl-oxazolomycins A and B (4 and 5). Tenebriazine displayed inhibitory activity against pathogenic fungi, whereas methyl-oxazolomycins A and B (4 and 5) selectively showed anti-proliferative activity against estrogen receptor-positive breast cancer cells. This metabologenomic method enables the logical and efficient discovery of new microbial natural products with a target structural motif without the need for isotopic labeling. A metabologenomic discovery method for terminal oxazole-bearing natural products was devised by integrating genomic screening utilizing a PCR primer set for oxazole cyclase genes with spectroscopic detection of oxazole based on the unique 1JCH values and chemical shifts. This metabologenomic method enables the logical and efficient discovery of new microbial natural products with a target structural motif without isotopic labeling.+ image
ISSN
1433-7851
URI
https://hdl.handle.net/10371/205080
DOI
https://doi.org/10.1002/anie.202402465
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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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