International audienceTransfer messenger RNA (tmRNA) directs the modification of proteins of which the biosynthesis has stalled or has been interrupted. Here, we report that aminoglycosides can interfere with this quality control system in bacteria, termed trans-translation. Neomycin B is the strongest inhibitor of tmRNA aminoacylation with alanine (K(i) value of approximately 35 micro m), an essential step during trans-translation. The binding sites of neomycin B do not overlap with the identity determinants for alanylation, but the aminoglycoside perturbs the conformation of the acceptor stem that contains the aminoacylation signals. Aminoglycosides reduce the conformational freedom of the transfer RNA-like domain of tmRNA. Additional con...
Macrolides are clinically important antibiotics thought to inhibit bacterial growth by impeding the ...
AbstractBackground: Aminoglycoside antibiotics interfere with ribosomal protein synthesis and with i...
Applying pre-steady state kinetics to an Escherichia-coli-based reconstituted translation system, we...
International audienceTransfer messenger RNA (tmRNA) directs the modification of proteins of which t...
International audienceTransfer messenger RNA (tmRNA) directs the modification of proteins of which t...
Aminoglycosides inhibit translation in bacteria by binding to the A site in the ribosome. Here, it i...
International audienceTrans-translation is a process that recycles ribosomes stalled on problematic ...
The spread of antibiotic resistance is turning many of the currently used antibiotics less effective...
Translational pausing in Escherichia coli can lead to mRNA cleavage within the ribosomal A-site. A-s...
SummaryInferring antibiotic mechanisms on translation through static structures has been challenging...
Inferring antibiotic mechanisms on translation through static structures has been challenging, as bi...
2012-09-18Unique bacterial process, trans-translation, has been studied to be an important process i...
Abstract: Aminoglycoside antibiotics have long been used as antibacterial agents due to their abilit...
AbstractProkaryotic aminoacylated-transfer RNAs often need to be efficiently segregated between tran...
International audienceBecause of the ever-increasing multidrug resistance in microorganisms, it is c...
Macrolides are clinically important antibiotics thought to inhibit bacterial growth by impeding the ...
AbstractBackground: Aminoglycoside antibiotics interfere with ribosomal protein synthesis and with i...
Applying pre-steady state kinetics to an Escherichia-coli-based reconstituted translation system, we...
International audienceTransfer messenger RNA (tmRNA) directs the modification of proteins of which t...
International audienceTransfer messenger RNA (tmRNA) directs the modification of proteins of which t...
Aminoglycosides inhibit translation in bacteria by binding to the A site in the ribosome. Here, it i...
International audienceTrans-translation is a process that recycles ribosomes stalled on problematic ...
The spread of antibiotic resistance is turning many of the currently used antibiotics less effective...
Translational pausing in Escherichia coli can lead to mRNA cleavage within the ribosomal A-site. A-s...
SummaryInferring antibiotic mechanisms on translation through static structures has been challenging...
Inferring antibiotic mechanisms on translation through static structures has been challenging, as bi...
2012-09-18Unique bacterial process, trans-translation, has been studied to be an important process i...
Abstract: Aminoglycoside antibiotics have long been used as antibacterial agents due to their abilit...
AbstractProkaryotic aminoacylated-transfer RNAs often need to be efficiently segregated between tran...
International audienceBecause of the ever-increasing multidrug resistance in microorganisms, it is c...
Macrolides are clinically important antibiotics thought to inhibit bacterial growth by impeding the ...
AbstractBackground: Aminoglycoside antibiotics interfere with ribosomal protein synthesis and with i...
Applying pre-steady state kinetics to an Escherichia-coli-based reconstituted translation system, we...