Feedback regulation plays a crucial role in dynamic gene expression in nature, but synthetic translational feedback systems have yet to be demonstrated. Here we use an RNA/protein interaction-based synthetic translational switch to create a feedback system that tightly controls the expression of proteins of interest in mammalian cells. Feedback is mediated by modified ribosomal L7Ae proteins, which bind a set of RNA motifs with a range of affinities. We designed these motifs into L7Ae-encoding mRNA. Newly translated L7Ae binds its own mRNA, inhibiting further translation. This inhibition tightly feedback-regulates the concentration of L7Ae and any fusion partner of interest. A mathematical model predicts system behavior as a function of RNA...
SummaryHere, we introduce an engineered, tunable genetic switch that couples repressor proteins and ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Biological Engineering, 2012.Catalo...
Our ability to efficiently and predictably program cells is central to the fields of bioengineering ...
Translation is a key step in the synthesis of proteins. Accordingly, cells have evolved an intricate...
Synthetic mRNAs, which are produced by in vitro transcription, have been recently attracting attenti...
The introduction of multiple genes into cells is increasingly required for understanding and enginee...
The introduction of multiple genes into cells is in-creasingly required for understanding and engine...
Synthetic posttranscriptional regulation of gene expression is important for understanding fundament...
Until recently, engineering strategies for altering gene expression have focused on transcription co...
Protein synthesis involves a complex machinery comprising numerous proteins and RNAs joined by nonco...
Translational regulation of gene expression includes any kind of regulators that affect the amount o...
Protein synthesis is controlled at the level of translation initiation. Cells rapidly respond to env...
abstract: Synthetic biology is an emerging engineering disciple, which designs and controls biologic...
Rate control analysis defines the in vivo control map governing yeast protein synthesis and generate...
Regulation of gene expression involves a wide array of cellular mechanisms that control the abundanc...
SummaryHere, we introduce an engineered, tunable genetic switch that couples repressor proteins and ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Biological Engineering, 2012.Catalo...
Our ability to efficiently and predictably program cells is central to the fields of bioengineering ...
Translation is a key step in the synthesis of proteins. Accordingly, cells have evolved an intricate...
Synthetic mRNAs, which are produced by in vitro transcription, have been recently attracting attenti...
The introduction of multiple genes into cells is increasingly required for understanding and enginee...
The introduction of multiple genes into cells is in-creasingly required for understanding and engine...
Synthetic posttranscriptional regulation of gene expression is important for understanding fundament...
Until recently, engineering strategies for altering gene expression have focused on transcription co...
Protein synthesis involves a complex machinery comprising numerous proteins and RNAs joined by nonco...
Translational regulation of gene expression includes any kind of regulators that affect the amount o...
Protein synthesis is controlled at the level of translation initiation. Cells rapidly respond to env...
abstract: Synthetic biology is an emerging engineering disciple, which designs and controls biologic...
Rate control analysis defines the in vivo control map governing yeast protein synthesis and generate...
Regulation of gene expression involves a wide array of cellular mechanisms that control the abundanc...
SummaryHere, we introduce an engineered, tunable genetic switch that couples repressor proteins and ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Biological Engineering, 2012.Catalo...
Our ability to efficiently and predictably program cells is central to the fields of bioengineering ...