SAM-I riboswitches regulate gene expression through transcription termination upon binding a S-adenosyl-L-methionine (SAM) ligand. In previous work, we characterized the conformational energy landscape of the full-length Bacillus subtilis yitJ SAM-I riboswitch as a function of Mg2+ and SAM ligand concentrations. Here, we have extended this work with measurements on a structurally similar ligand, S-adenosyl-l-homocysteine (SAH), which has, however, a much lower binding affinity. Using single-molecule Forster resonance energy transfer (smFRET) microscopy and hidden Markov modeling (HMM) analysis, we identified major conformations and determined their fractional populations and dynamics. At high Mg2+ concentration, FRET analysis yielded four d...
Riboswitches are regulatory elements found in bacterial mRNAs that control downstream gene expressio...
Riboswitches are a newly discovered large family of structured functional RNA elements that specific...
Riboswitches sense cellular concentrations of small molecules and use this information to adjust syn...
SAM-I riboswitches regulate gene expression through transcription termination upon binding a S-adeno...
S-adenosyl-L-methionine (SAM) ligand binding induces major structural changes in SAM-I riboswitches,...
SAM-I riboswitches regulate gene expression through transcription termination upon binding a S-adeno...
Binding of the ligand S-adenosyl-L-methionine (SAM) produces major structural changes in the SAM-I r...
Binding of the ligand S-adenosyl-L-methionine (SAM) produces major structural changes in the SAM-I r...
The chemical and physical properties of RNAs create a diverse functional portfolio to influence the ...
Riboswitches are recently discovered regulatory RNAs that directly relay environmental cues to the g...
Riboswitches are regulatory elements found in bacterial mRNAs that control downstream gene expressio...
Many bacterial genes are controlled by metabolite sensing motifs known as riboswitches, normally loc...
<div><p>Riboswitches sense cellular concentrations of small molecules and use this information to ad...
Riboswitches are regulatory elements found in bacterial mRNAs that control downstream gene expressio...
Riboswitches are regulatory elements found in bacterial mRNAs that control downstream gene expressio...
Riboswitches are regulatory elements found in bacterial mRNAs that control downstream gene expressio...
Riboswitches are a newly discovered large family of structured functional RNA elements that specific...
Riboswitches sense cellular concentrations of small molecules and use this information to adjust syn...
SAM-I riboswitches regulate gene expression through transcription termination upon binding a S-adeno...
S-adenosyl-L-methionine (SAM) ligand binding induces major structural changes in SAM-I riboswitches,...
SAM-I riboswitches regulate gene expression through transcription termination upon binding a S-adeno...
Binding of the ligand S-adenosyl-L-methionine (SAM) produces major structural changes in the SAM-I r...
Binding of the ligand S-adenosyl-L-methionine (SAM) produces major structural changes in the SAM-I r...
The chemical and physical properties of RNAs create a diverse functional portfolio to influence the ...
Riboswitches are recently discovered regulatory RNAs that directly relay environmental cues to the g...
Riboswitches are regulatory elements found in bacterial mRNAs that control downstream gene expressio...
Many bacterial genes are controlled by metabolite sensing motifs known as riboswitches, normally loc...
<div><p>Riboswitches sense cellular concentrations of small molecules and use this information to ad...
Riboswitches are regulatory elements found in bacterial mRNAs that control downstream gene expressio...
Riboswitches are regulatory elements found in bacterial mRNAs that control downstream gene expressio...
Riboswitches are regulatory elements found in bacterial mRNAs that control downstream gene expressio...
Riboswitches are a newly discovered large family of structured functional RNA elements that specific...
Riboswitches sense cellular concentrations of small molecules and use this information to adjust syn...