<div><p>Riboswitches are RNA-based regulators of gene expression composed of a ligand-sensing aptamer domain followed by an overlapping expression platform. The regulation occurs at either the level of transcription (by formation of terminator or antiterminator structures) or translation (by presentation or sequestering of the ribosomal binding site). Due to a modular composition, these elements can be manipulated by combining different aptamers and expression platforms and therefore represent useful tools to regulate gene expression in synthetic biology. Using computationally designed theophylline-dependent riboswitches we show that 2 parameters, terminator hairpin stability and folding traps, have a major impact on the functionality of th...
RNA-based biosensors and regulatory devices have received significant attention for their potential ...
Riboswitches are common gene regulatory units mostly found in bacteria that are capable of altering ...
RNA aptamers readily recognize small organic molecules, polypeptides, as well as other nucleic acids...
Riboswitches are RNA-based regulators of gene expression composed of a ligand-sensing aptamer domain...
Riboswitches are regulatory RNA elements typically located in the 50-untranslated region of certain ...
Several techniques originating from synthetic biology have a big impact on the field of metabolic en...
RNA utilizes many different mechanisms to control gene expression. Among the regulatory elements tha...
Riboswitches have gained attention as tools for synthetic biology, since they enable researchers to ...
Riboswitches are noncoding RNA switches that are largely utilized in bacteria and play a significant...
Riboswitches have gained attention as tools for synthetic biology, since they enable researchers to ...
Synthetic riboswitches are a versatile class of regulatory elements that are becoming increasingly e...
The first conditional gene expression system which employed a small molecule binding aptamer was dev...
Riboswitches are cis-acting regulatory elements broadly distributed in bacterial mRNAs that control ...
Riboswitches have gained attention as tools for synthetic biology, since they enable researchers to ...
The first conditional gene expression system which employed a small molecule binding aptamer was dev...
RNA-based biosensors and regulatory devices have received significant attention for their potential ...
Riboswitches are common gene regulatory units mostly found in bacteria that are capable of altering ...
RNA aptamers readily recognize small organic molecules, polypeptides, as well as other nucleic acids...
Riboswitches are RNA-based regulators of gene expression composed of a ligand-sensing aptamer domain...
Riboswitches are regulatory RNA elements typically located in the 50-untranslated region of certain ...
Several techniques originating from synthetic biology have a big impact on the field of metabolic en...
RNA utilizes many different mechanisms to control gene expression. Among the regulatory elements tha...
Riboswitches have gained attention as tools for synthetic biology, since they enable researchers to ...
Riboswitches are noncoding RNA switches that are largely utilized in bacteria and play a significant...
Riboswitches have gained attention as tools for synthetic biology, since they enable researchers to ...
Synthetic riboswitches are a versatile class of regulatory elements that are becoming increasingly e...
The first conditional gene expression system which employed a small molecule binding aptamer was dev...
Riboswitches are cis-acting regulatory elements broadly distributed in bacterial mRNAs that control ...
Riboswitches have gained attention as tools for synthetic biology, since they enable researchers to ...
The first conditional gene expression system which employed a small molecule binding aptamer was dev...
RNA-based biosensors and regulatory devices have received significant attention for their potential ...
Riboswitches are common gene regulatory units mostly found in bacteria that are capable of altering ...
RNA aptamers readily recognize small organic molecules, polypeptides, as well as other nucleic acids...