A small molecule-responsive self-cleaving ribozyme (aptazyme) embedded in the untranslated region of an mRNA functions as a riboswitch that allows chemical regulation of gene expression in mammalian cells. Aptazymes are engineered by fusing a self-cleaving ribozyme with an RNA aptamer that recognizes a small molecule so that the ribozyme is either activated or inhibited in the presence of the small molecule. However, the variety of aptamers, ribozymes, and aptazyme design strategies suitable for mammalian riboswitch applications is still limited. This work focuses on a new ribozyme scaffold for engineering aptazymes and riboswitches that function in mammalian cells. We investigated circularly permuted variants of the pistol ribozyme class (...
The first conditional gene expression system which employed a small molecule binding aptamer was dev...
Metabolite-responsive RNA pseudoknots derived from prokaryotic riboswitches have been shown to stimu...
Several techniques originating from synthetic biology have a big impact on the field of metabolic en...
Self-cleaving ribozymes engineered to be activated or inhibited by a small molecule binding to an RN...
Artificial riboswitches based on ribozymes serve as versatile tools for ligand-dependent gene expres...
Synthetic riboswitches are a versatile class of regulatory elements that are becoming increasingly e...
Molecular recognition by RNA aptamers has been exploited to control gene expression in response to s...
Efforts to control mammalian gene expression with ligand-responsive riboswitches have been hindered ...
Within the last few years, a set of synthetic riboswitches has been engineered, which expands the to...
RNA utilizes many different mechanisms to control gene expression. Among the regulatory elements tha...
Engineered ribozymes are powerful tools for manipulating gene expression in living cells. However, i...
The recent description of a new widespread class of small endonucleolytic ribozymes termed “twister”...
Chemically regulated self-cleaving ribozymes, or aptazymes, are emerging as a promising class of gen...
Riboswitches are common gene regulatory units mostly found in bacteria that are capable of altering ...
RNA is a versatile biomolecule capable of transferring information, taking on distinct three-dimensi...
The first conditional gene expression system which employed a small molecule binding aptamer was dev...
Metabolite-responsive RNA pseudoknots derived from prokaryotic riboswitches have been shown to stimu...
Several techniques originating from synthetic biology have a big impact on the field of metabolic en...
Self-cleaving ribozymes engineered to be activated or inhibited by a small molecule binding to an RN...
Artificial riboswitches based on ribozymes serve as versatile tools for ligand-dependent gene expres...
Synthetic riboswitches are a versatile class of regulatory elements that are becoming increasingly e...
Molecular recognition by RNA aptamers has been exploited to control gene expression in response to s...
Efforts to control mammalian gene expression with ligand-responsive riboswitches have been hindered ...
Within the last few years, a set of synthetic riboswitches has been engineered, which expands the to...
RNA utilizes many different mechanisms to control gene expression. Among the regulatory elements tha...
Engineered ribozymes are powerful tools for manipulating gene expression in living cells. However, i...
The recent description of a new widespread class of small endonucleolytic ribozymes termed “twister”...
Chemically regulated self-cleaving ribozymes, or aptazymes, are emerging as a promising class of gen...
Riboswitches are common gene regulatory units mostly found in bacteria that are capable of altering ...
RNA is a versatile biomolecule capable of transferring information, taking on distinct three-dimensi...
The first conditional gene expression system which employed a small molecule binding aptamer was dev...
Metabolite-responsive RNA pseudoknots derived from prokaryotic riboswitches have been shown to stimu...
Several techniques originating from synthetic biology have a big impact on the field of metabolic en...