A grand challenge in synthetic biology is to use our current knowledge of RNA science to perform the automatic engineering of completely synthetic sequences encoding functional RNAs in living cells. We report here a fully automated design methodology and experimental validation of synthetic RNA interaction circuits working in a cellular environment. The computational algorithm, based on a physicochemical model, produces novel RNA sequences by exploring the space of possible sequences compatible with predefined structures. We tested our methodology in Escherichia coli by designing several positive riboregulators with diverse structures and interaction models, suggesting that only the energy of formation and the activation energy (free energy...
Synthetic gene circuits allow the behavior of living cells to be reprogrammed, and non-coding small ...
Since our ability to engineer biological systems is directly related to our ability to control gene ...
RNA molecules lie at the heart of living organisms where they are associated with most of the cellul...
RNA devices provide synthetic biologists with tools for manipulating post-transcriptional regulation...
The discovery and study of a vast number of regulatory RNAs in all kingdoms of life over the past de...
Synthetic biology aims to develop engineering-driven approaches to the programming of cellular funct...
Synthetic biology aims to develop engineering-driven approaches to the programming of cellular funct...
Small RNAs (sRNAs) can operate as regulatory agents to control protein expression by interaction wit...
Our ability to efficiently and predictably program cells is central to the fields of bioengineering ...
<div><p>Small RNAs (sRNAs) can operate as regulatory agents to control protein expression by interac...
<div><p>Synthetic biology aims at (re-)programming living cells like computers to perform new functi...
Motivation: The ability to engineer control systems of gene expression is instrumental for synthetic...
Regulation of gene expression triggered by conformational changes in RNA molecules is widely observe...
AbstractThe regulation of gene expression, triggered by conformational changes in RNA molecules, is ...
Synthetic biology aims at (re-)programming living cells like computers to perform new functions for ...
Synthetic gene circuits allow the behavior of living cells to be reprogrammed, and non-coding small ...
Since our ability to engineer biological systems is directly related to our ability to control gene ...
RNA molecules lie at the heart of living organisms where they are associated with most of the cellul...
RNA devices provide synthetic biologists with tools for manipulating post-transcriptional regulation...
The discovery and study of a vast number of regulatory RNAs in all kingdoms of life over the past de...
Synthetic biology aims to develop engineering-driven approaches to the programming of cellular funct...
Synthetic biology aims to develop engineering-driven approaches to the programming of cellular funct...
Small RNAs (sRNAs) can operate as regulatory agents to control protein expression by interaction wit...
Our ability to efficiently and predictably program cells is central to the fields of bioengineering ...
<div><p>Small RNAs (sRNAs) can operate as regulatory agents to control protein expression by interac...
<div><p>Synthetic biology aims at (re-)programming living cells like computers to perform new functi...
Motivation: The ability to engineer control systems of gene expression is instrumental for synthetic...
Regulation of gene expression triggered by conformational changes in RNA molecules is widely observe...
AbstractThe regulation of gene expression, triggered by conformational changes in RNA molecules, is ...
Synthetic biology aims at (re-)programming living cells like computers to perform new functions for ...
Synthetic gene circuits allow the behavior of living cells to be reprogrammed, and non-coding small ...
Since our ability to engineer biological systems is directly related to our ability to control gene ...
RNA molecules lie at the heart of living organisms where they are associated with most of the cellul...