Mechanism of action of nucleoside antibacterial natural product antibiotics
Author:
Publisher
Springer Science and Business Media LLC
Subject
Drug Discovery,Pharmacology
Link
http://www.nature.com/articles/s41429-019-0227-3.pdf
Reference88 articles.
1. Isono K, Uramoto M, Kusakabe H, Kimura K, Izaki K, Nelson CC, et al. Liposidomycins: novel nucleoside antibiotics which inhibit bacterial peptidoglycan biosynthesis. J Antibiot. 1985;38:1617–21.
2. Takatsuki A, Arima K. Tamura G. Tunicamycin, a new antibiotic. I. Isolation and characterization of tunicamycin. J Antibiotics. 1971;24:215–23.
3. Kimura KI, Bugg TDH. Recent advances in antimicrobial nucleoside antibiotics targetting cell wall biosynthesis. Nat Prod Rep. 2003;20:252–73.
4. Winn M, Goss RJM, Kimura KI, Bugg TDH. Antimicrobial nucleoside antibiotics targeting cell wall assembly: recent advances in structure-function studies and nucleoside biosynthesis. Nat Prod Rep. 2010;27:279–304.
5. Heifetz A, Keenan RW, Elbein AD. Mechanism of action of tunicamycin on the UDP-GlcNAc:dolichyl-phosphate GlcNAc-1-phosphate transferase. Biochemistry. 1979;18:2186–92.
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