Prokaryotic regulatory proteins respond to diverse signals and represent a rich resource for building synthetic sensors and circuits. The TetR family contains >10<sup>5</sup> members that use a simple mechanism to respond to stimuli and bind distinct DNA operators. We present a platform that enables the transfer of these regulators to mammalian cells, which is demonstrated using human embryonic kidney (HEK293) and Chinese hamster ovary (CHO) cells. The repressors are modified to include nuclear localization signals (NLS) and responsive promoters are built by incorporating multiple operators. Activators are also constructed by modifying the protein to include a VP16 domain. Together, this approach yields 15 new regulators that demonstrate 19...
Chen, WilfredLiving systems of all scales must constantly adapt to changing conditions by surveying ...
The development and progress in synthetic biologyhas been remarkable. Although still in its infancy,...
Gene regulatory networks lay at the foundation of biological function and are responsible for drivin...
*S Supporting Information ABSTRACT: Prokaryotic regulatory proteins respond to diverse signals and r...
Multicellular organisms perform sophisticated computations on a myriad of environmental cues and pro...
One of the goals of synthetic biology is to develop programmable artificial gene networks that can t...
Synthetic biology applies an engineering mindset to the classical field of biology in order to facil...
SummaryOne of the goals of synthetic biology is to develop programmable artificial gene networks tha...
Synthetic biology has significantly advanced the design of synthetic control devices, gene circuits ...
[Synthetic biology has established powerful tools to precisely control cell function. Engineering th...
Synthetic biology has established powerful tools to precisely control cell function. Engineering the...
Available to synthetic biologists are a wide range of genetic devices. Many of these devices are abl...
Synthetic biology has made great progress in engineering various components of cell signaling. These...
An important goal of synthetic biology is the rational design and predictable implementation of synt...
Synthetic biology relies on rapid and efficient methods to stably integrate DNA payloads encoding fo...
Chen, WilfredLiving systems of all scales must constantly adapt to changing conditions by surveying ...
The development and progress in synthetic biologyhas been remarkable. Although still in its infancy,...
Gene regulatory networks lay at the foundation of biological function and are responsible for drivin...
*S Supporting Information ABSTRACT: Prokaryotic regulatory proteins respond to diverse signals and r...
Multicellular organisms perform sophisticated computations on a myriad of environmental cues and pro...
One of the goals of synthetic biology is to develop programmable artificial gene networks that can t...
Synthetic biology applies an engineering mindset to the classical field of biology in order to facil...
SummaryOne of the goals of synthetic biology is to develop programmable artificial gene networks tha...
Synthetic biology has significantly advanced the design of synthetic control devices, gene circuits ...
[Synthetic biology has established powerful tools to precisely control cell function. Engineering th...
Synthetic biology has established powerful tools to precisely control cell function. Engineering the...
Available to synthetic biologists are a wide range of genetic devices. Many of these devices are abl...
Synthetic biology has made great progress in engineering various components of cell signaling. These...
An important goal of synthetic biology is the rational design and predictable implementation of synt...
Synthetic biology relies on rapid and efficient methods to stably integrate DNA payloads encoding fo...
Chen, WilfredLiving systems of all scales must constantly adapt to changing conditions by surveying ...
The development and progress in synthetic biologyhas been remarkable. Although still in its infancy,...
Gene regulatory networks lay at the foundation of biological function and are responsible for drivin...