The aminoglycoside antibiotic hygromycin B was examined in Escherichia coli cells for inhibitory effects on translation and ribosomal-subunit formation. Pulse-chase labeling experiments were performed, which verified lower rates of ribosomal-subunit synthesis in drug-treated cells. Hygromycin B exhibited a concentration-dependent inhibitory effect on viable-cell numbers, growth rate, protein synthesis, and 30S and 50S subunit formation. Unlike other aminoglycosides, hygromycin B was a more effective inhibitor of translation than of ribosomal-subunit formation in E. coli. Examination of total RNA from treated cells showed an increase in RNA corresponding to a precursor to the 16S rRNA, while mature 16S rRNA decreased. Northern hybridization ...
The inhibition of bacterial ribosomal subunit formation is a novel target for translational inhibito...
Virginiamycin S is an inhibitor of protein synthesis in vivo. In this paper we show by equilibrium d...
The new ketolide antibiotic telithromycin (HMR3647) has been examined for inhibitory effects in cell...
The aminoglycosides paromomycin and neomycin were examined in Escherichia coli cells for an inhibito...
Several antibiotics that prevent translation by binding to ribosomal subunits have been shown to als...
Erythromycin and other macrolide antibiotics have been examined for their effects on ribosome assemb...
The bacterial ribosome is an important target for many antimicrobial agents. Aminoglycoside antibiot...
The effects of erythromycin on the formation of ribosomal subunits were examined in wild-type Escher...
Azithromycin is an important antibiotic for the treatment of several different Gram-positive and Gra...
The spread of antibiotic resistance is turning many of the currently used antibiotics less effective...
The translational functions of the bacterial ribosome are the target for a large number of antimicro...
Nine structurally similar macrolide antibiotics were tested at a concentration of 0.5 μg/ml for thei...
The development of microbial resistance to practically all currently used antimicrobial agents has s...
The continuing increase in antibiotic-resistant pathogenic bacterial has stimulated research on the ...
The increase in antibiotic-resistant microorganisms has driven a search for new antibiotic targets a...
The inhibition of bacterial ribosomal subunit formation is a novel target for translational inhibito...
Virginiamycin S is an inhibitor of protein synthesis in vivo. In this paper we show by equilibrium d...
The new ketolide antibiotic telithromycin (HMR3647) has been examined for inhibitory effects in cell...
The aminoglycosides paromomycin and neomycin were examined in Escherichia coli cells for an inhibito...
Several antibiotics that prevent translation by binding to ribosomal subunits have been shown to als...
Erythromycin and other macrolide antibiotics have been examined for their effects on ribosome assemb...
The bacterial ribosome is an important target for many antimicrobial agents. Aminoglycoside antibiot...
The effects of erythromycin on the formation of ribosomal subunits were examined in wild-type Escher...
Azithromycin is an important antibiotic for the treatment of several different Gram-positive and Gra...
The spread of antibiotic resistance is turning many of the currently used antibiotics less effective...
The translational functions of the bacterial ribosome are the target for a large number of antimicro...
Nine structurally similar macrolide antibiotics were tested at a concentration of 0.5 μg/ml for thei...
The development of microbial resistance to practically all currently used antimicrobial agents has s...
The continuing increase in antibiotic-resistant pathogenic bacterial has stimulated research on the ...
The increase in antibiotic-resistant microorganisms has driven a search for new antibiotic targets a...
The inhibition of bacterial ribosomal subunit formation is a novel target for translational inhibito...
Virginiamycin S is an inhibitor of protein synthesis in vivo. In this paper we show by equilibrium d...
The new ketolide antibiotic telithromycin (HMR3647) has been examined for inhibitory effects in cell...