Riboswitches represent a family of highly structured regulatory elements found primarily in the leader sequences of bacterial mRNAs. They function as molecular switches capable of altering gene expression; commonly, this occurs via a conformational change in a regulatory element of a riboswitch that results from ligand binding in the aptamer domain. Numerous studies have investigated the ligand binding process, but little is known about the structural changes in the regulatory element. A mechanistic description of both processes is essential for deeply understanding how riboswitches modulate gene expression. This task is greatly facilitated by studying all aspects of riboswitch structure/dynamics/function in the same model system. To this e...
In bacteria, the regulation of gene expression by cis-acting transcriptional riboswitches located in...
Bacterial gene expression can be regulated at mRNA level by cis-acting mRNA elements termed riboswit...
In response to intracellular signals in Gram-negative bacteria, translational riboswitches—commonly ...
Riboswitches are regulatory elements found in bacterial mRNAs that control downstream gene expressio...
To respond to rapidly-changing stresses in their environment, bacterial cells must be able to sense ...
Riboswitches sense cellular concentrations of small molecules and use this information to adjust syn...
<div><p>Riboswitches sense cellular concentrations of small molecules and use this information to ad...
Riboswitches are newly discovered regulatory elements which control a wide set of basic metabolic pa...
Riboswitches regulate gene expression via ligand binding to an aptamer domain which induces conforma...
SAM-I riboswitches regulate gene expression through transcription termination upon binding a S-adeno...
Riboswitches are mRNA elements regulating gene expression in response to direct binding of a metabol...
RNA is a versatile biomolecule capable of transferring information, taking on distinct three-dimensi...
SummaryRiboswitches are mRNA elements regulating gene expression in response to direct binding of a ...
Riboswitches are genetic control elements within non-coding regions of mRNA. These self-regulatory e...
Because RNAs fold as they are being synthesized, their transcription rate can affect their folding. ...
In bacteria, the regulation of gene expression by cis-acting transcriptional riboswitches located in...
Bacterial gene expression can be regulated at mRNA level by cis-acting mRNA elements termed riboswit...
In response to intracellular signals in Gram-negative bacteria, translational riboswitches—commonly ...
Riboswitches are regulatory elements found in bacterial mRNAs that control downstream gene expressio...
To respond to rapidly-changing stresses in their environment, bacterial cells must be able to sense ...
Riboswitches sense cellular concentrations of small molecules and use this information to adjust syn...
<div><p>Riboswitches sense cellular concentrations of small molecules and use this information to ad...
Riboswitches are newly discovered regulatory elements which control a wide set of basic metabolic pa...
Riboswitches regulate gene expression via ligand binding to an aptamer domain which induces conforma...
SAM-I riboswitches regulate gene expression through transcription termination upon binding a S-adeno...
Riboswitches are mRNA elements regulating gene expression in response to direct binding of a metabol...
RNA is a versatile biomolecule capable of transferring information, taking on distinct three-dimensi...
SummaryRiboswitches are mRNA elements regulating gene expression in response to direct binding of a ...
Riboswitches are genetic control elements within non-coding regions of mRNA. These self-regulatory e...
Because RNAs fold as they are being synthesized, their transcription rate can affect their folding. ...
In bacteria, the regulation of gene expression by cis-acting transcriptional riboswitches located in...
Bacterial gene expression can be regulated at mRNA level by cis-acting mRNA elements termed riboswit...
In response to intracellular signals in Gram-negative bacteria, translational riboswitches—commonly ...