| Literature DB >> 27623314 |
Takayuki Kato1, Guanyu Yang1, Youjin Teo2, Reda Juskeviciene2, Déborah Perez-Fernandez3, Harish M Shinde3, Sumanth Salian3, Bruno Bernet3, Andrea Vasella3, Erik C Böttger2, David Crich1.
Abstract
Chemistry for the efficient modification of the kanamycin class of 4,6-aminoglycosides at the 4'-position is presented. In all kanamycins but kanamycin B, 4'-O-alkylation is strongly detrimental to antiribosomal and antibacterial activity. Ethylation of kanamycin B at the 4″-position entails little loss of antiribosomal and antibacterial activity, but no increase of ribosomal selectivity. These results are contrasted with those for the 4,5-aminoglycosides, where 4'-O-alkylation of paromomycin causes only a minimal loss of activity but results in a significant increase in selectivity with a concomitant loss of ototoxicity.Entities:
Keywords: antibacterial activity; decoding A site; mitochondrial rRNA; ototoxicity; ribosomal selectivity
Year: 2015 PMID: 27623314 DOI: 10.1021/acsinfecdis.5b00069
Source DB: PubMed Journal: ACS Infect Dis ISSN: 2373-8227 Impact factor: 5.084