Riboswitches have gained attention as tools for synthetic biology, since they enable researchers to reprogram cells to sense and respond to exogenous molecules. In vitro evolutionary approaches produced numerous RNA aptamers that bind such small ligands, but their conversion into functional riboswitches remains difficult. We previously developed a computational approach for the design of synthetic theophylline riboswitches based on secondary structure prediction. These riboswitches have been constructed to regulate ligand dependent transcription termination in Escherichia coli. Here, we test the usability of this design strategy by applying the approach to tetracycline and streptomycin aptamers. The resulting tetracycline riboswitches exhib...
Synthetic riboswitches are powerful tools in synthetic biology in which sensing and execution are co...
RNA is a key molecule for living organism in all kingdom of life. A major task performed by RNA is t...
RNA aptamers readily recognize small organic molecules, polypeptides, as well as other nucleic acids...
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 driving force of synthetic biology is the desire to build programmable cellular systems de novo ...
<div><p>Riboswitches are RNA-based regulators of gene expression composed of a ligand-sensing aptame...
SummaryRiboswitches are RNA-based genetic control elements that regulate gene expression in a ligand...
This work was supported by BBSRC grant BB/I012648/1, Manchester Centre for Synthetic Biology (SynBio...
Riboswitches are noncoding RNA switches that are largely utilized in bacteria and play a significant...
While many different RNA aptamers have been identified that bind to a plethora of small molecules on...
The scientific discipline known as synthetic biology aims to develop a set of tools and engineering ...
Several techniques originating from synthetic biology have a big impact on the field of metabolic en...
RNA aptamers readily recognize small organic molecules, polypeptides, as well as other nucleic acids...
Riboswitches reflect a novel concept in gene regulation that is particularly suited for technologica...
Synthetic riboswitches are powerful tools in synthetic biology in which sensing and execution are co...
RNA is a key molecule for living organism in all kingdom of life. A major task performed by RNA is t...
RNA aptamers readily recognize small organic molecules, polypeptides, as well as other nucleic acids...
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 driving force of synthetic biology is the desire to build programmable cellular systems de novo ...
<div><p>Riboswitches are RNA-based regulators of gene expression composed of a ligand-sensing aptame...
SummaryRiboswitches are RNA-based genetic control elements that regulate gene expression in a ligand...
This work was supported by BBSRC grant BB/I012648/1, Manchester Centre for Synthetic Biology (SynBio...
Riboswitches are noncoding RNA switches that are largely utilized in bacteria and play a significant...
While many different RNA aptamers have been identified that bind to a plethora of small molecules on...
The scientific discipline known as synthetic biology aims to develop a set of tools and engineering ...
Several techniques originating from synthetic biology have a big impact on the field of metabolic en...
RNA aptamers readily recognize small organic molecules, polypeptides, as well as other nucleic acids...
Riboswitches reflect a novel concept in gene regulation that is particularly suited for technologica...
Synthetic riboswitches are powerful tools in synthetic biology in which sensing and execution are co...
RNA is a key molecule for living organism in all kingdom of life. A major task performed by RNA is t...
RNA aptamers readily recognize small organic molecules, polypeptides, as well as other nucleic acids...