Antimycobacterial Muraymycins Isolated fromsp. NRRL 30475 Using OSMAC and Precursor-Feeding Strategies.
Fengjuan Zhou, Jiawen Sun, Rui Zhang, Hanyang Peng, Yunyao Ren, Youjuan Zhu, Yongdi Sun, Steven G Van Lanen, et al. (10 authors)
Journal of natural products · 2025-06
Abstract
Three mutant strains ofsp. NRRL 30471 were screened with eight different media based on "One Strain Many Compounds" (OSMAC) and precursor-feeding strategies. Five new muraymycins, D5-D9 (-), together with three known congeners were isolated and identified fromsp. NRRL 30475 using an optimized BPM23A medium containing methionine, leucine, and arginine (each 1.5 g/L). Structures of new compounds were elucidated using HR-MS and NMR spectroscopic data. Muraymycin D6 () represents the first natural muraymycin with phosphorylation at the 3'-OH of the ribofuranoside moiety. Muraymycin D9 () features a unique dehydrocyclization of the carboxyl of a valine with the epicapreomycidine imide of the peptide moiety, forming an isopropyl hydantoin structure. Except for muraymycin D8 (), which lacked the ribofuranose, all isolated muraymycins (-and) displayed potent antimycobacterial activity against(MIC = 2-32 μg/mL). Specifically, the activities of-andwere even better than those of the positive control isoniazid (MIC = 16 μg/mL). Moreover, muraymycins D1, D2, D4, and D5 (-) had antimycobacterial effects againstwith MIC values in the range of 8-16 μg/mL. This finding highlights muraymycin nucleoside has potential for the development of antituberculosis antibiotics.
MeSH terms
- Streptomyces
- Molecular Structure
- Microbial Sensitivity Tests
- Anti-Bacterial Agents
- Nuclear Magnetic Resonance, Biomolecular
- Mycobacterium smegmatis
- Mycobacterium tuberculosis
- Leucine