Objectives: The discovery of new antibiotic targets is important to stem the increase in antibiotic resistance to most currently used antimicrobials. The bacterial ribosome is a major target for a large number of antibiotics that inhibit different aspects of translation. Most of these antimicrobial agents also inhibit ribosomal subunit formation as a second cellular target. Precise subunit assembly requires the activity of several distinct RNases for proper rRNA processing. The present work shows that the vanadyl ribonucleoside complex (VRC) inhibited RNases in Staphylococcus aureus involved in ribosomal subunit formation without an effect on translation. Methods: Methicillin-susceptible and -resistant strains of S. aureus were examined for...
Inhibition of protein synthesis is one of the most common modes of action for medically useful antib...
The use of antibiotics has revolutionized medicine, greatly improving our capacity to save millions ...
The effects of the everninomicin antibiotic evernimicin (SCH27899) on growing Staphylococcus aureus ...
The increase in antibiotic-resistant microorganisms has driven a search for new antibiotic targets a...
The development of microbial resistance to practically all currently used antimicrobial agents has s...
The bacterial ribosome is an important target for many antimicrobial agents. Aminoglycoside antibiot...
This article describes 20 years of research that investigated a second novel target for ribosomal an...
Several antibiotics that prevent translation by binding to ribosomal subunits have been shown to als...
Although a number of different antibiotics are used to combat staphylococcal infections, resistance ...
The translational functions of the bacterial ribosome are the target for a large number of antimicro...
Antibiotics have been commonly used in medical practice for over 40 years. However, the misuse and o...
A substantial number of antimicrobial agents target some activity of the bacterial ribosome for inhi...
A number of different antibiotics that prevent translation by binding to the 50S ribosomal subunit o...
The continuing increase in antibiotic-resistant pathogenic bacterial has stimulated research on the ...
Nine structurally similar macrolide antibiotics were tested at a concentration of 0.5 μg/ml for thei...
Inhibition of protein synthesis is one of the most common modes of action for medically useful antib...
The use of antibiotics has revolutionized medicine, greatly improving our capacity to save millions ...
The effects of the everninomicin antibiotic evernimicin (SCH27899) on growing Staphylococcus aureus ...
The increase in antibiotic-resistant microorganisms has driven a search for new antibiotic targets a...
The development of microbial resistance to practically all currently used antimicrobial agents has s...
The bacterial ribosome is an important target for many antimicrobial agents. Aminoglycoside antibiot...
This article describes 20 years of research that investigated a second novel target for ribosomal an...
Several antibiotics that prevent translation by binding to ribosomal subunits have been shown to als...
Although a number of different antibiotics are used to combat staphylococcal infections, resistance ...
The translational functions of the bacterial ribosome are the target for a large number of antimicro...
Antibiotics have been commonly used in medical practice for over 40 years. However, the misuse and o...
A substantial number of antimicrobial agents target some activity of the bacterial ribosome for inhi...
A number of different antibiotics that prevent translation by binding to the 50S ribosomal subunit o...
The continuing increase in antibiotic-resistant pathogenic bacterial has stimulated research on the ...
Nine structurally similar macrolide antibiotics were tested at a concentration of 0.5 μg/ml for thei...
Inhibition of protein synthesis is one of the most common modes of action for medically useful antib...
The use of antibiotics has revolutionized medicine, greatly improving our capacity to save millions ...
The effects of the everninomicin antibiotic evernimicin (SCH27899) on growing Staphylococcus aureus ...