Biological small-molecule-dependent switches sense external chemical signals and transduce them into appropriate internal signals and cellular responses. Artificial molecular switches that control the function of any protein of interest using a small molecule are powerful tools for studying biology because they enable cellular responses to be controlled by inputs chosen by researcher. Furthermore, these switches can combine the generality of genetic regulation with the reversibility and temporal control afforded by small molecules. Three approaches to creating molecular switches include altering a natural switch to recognize new exogenous ligands, engineering novel allosteric responses to ligand binding, or enforcing protein localization wi...
AbstractMolecular switches are the fundamental building blocks in the field of synthetic biology. Th...
Direct and selective small molecule control of transcription factor activity is an appealing avenue ...
Nature carries out its molecular biology work with the utmost of spatial and temporal control. To st...
Biological small-molecule-dependent switches sense external chemical signals and transduce them into...
<p>Tools to selectively and reversibly control gene expression are useful to study and model cellula...
Small-molecule responsive protein switches are crucial components to control synthetic cellular acti...
A common strategy to understand a biological system is to selectively perturb it and observe its res...
Thesis (Ph.D.)--University of Washington, 2017-08The activities of the proteins involved in eukaryot...
Controlling enzymes in a monospecific fashion is significant in the study and treatment of metabolic...
AbstractRNA has recently been shown to play diverse roles in gene regulation, including the small mo...
Gene switches, also known as transcription factors, are important components of genetic circuits, an...
The human body is comprised of several hundred distinct cell types that all share a common genomic t...
Small molecules that reconstitute the binding mode(s) of a protein and in doing so elicit a programm...
Protein switches are ubiquitous in biological signal transduction systems, enabling cells to sense a...
Protein switches are ubiquitous in biological signal transduction systems, enabling cells to sense a...
AbstractMolecular switches are the fundamental building blocks in the field of synthetic biology. Th...
Direct and selective small molecule control of transcription factor activity is an appealing avenue ...
Nature carries out its molecular biology work with the utmost of spatial and temporal control. To st...
Biological small-molecule-dependent switches sense external chemical signals and transduce them into...
<p>Tools to selectively and reversibly control gene expression are useful to study and model cellula...
Small-molecule responsive protein switches are crucial components to control synthetic cellular acti...
A common strategy to understand a biological system is to selectively perturb it and observe its res...
Thesis (Ph.D.)--University of Washington, 2017-08The activities of the proteins involved in eukaryot...
Controlling enzymes in a monospecific fashion is significant in the study and treatment of metabolic...
AbstractRNA has recently been shown to play diverse roles in gene regulation, including the small mo...
Gene switches, also known as transcription factors, are important components of genetic circuits, an...
The human body is comprised of several hundred distinct cell types that all share a common genomic t...
Small molecules that reconstitute the binding mode(s) of a protein and in doing so elicit a programm...
Protein switches are ubiquitous in biological signal transduction systems, enabling cells to sense a...
Protein switches are ubiquitous in biological signal transduction systems, enabling cells to sense a...
AbstractMolecular switches are the fundamental building blocks in the field of synthetic biology. Th...
Direct and selective small molecule control of transcription factor activity is an appealing avenue ...
Nature carries out its molecular biology work with the utmost of spatial and temporal control. To st...