細胞の運命を制御する人工RNA論理回路の構築に成功. 京都大学プレスリリース. 2018-11-20.Synthetic biological circuits are designed to regulate gene expressions to control cell function. To date, these circuits often use DNA-delivery methods, which may lead to random genomic integration. To lower this risk, an all RNA system, in which the circuit and delivery method are constituted of RNA components, is preferred. However, the construction of complexed circuits using RNA-delivered devices in living cells has remained a challenge. Here we show synthetic mRNA-delivered circuits with RNA-binding proteins for logic computation in mammalian cells. We create a set of logic circuits (AND, OR, NAND, NOR, and XOR gates) using microRNA (miRNA)- and protein-responsive mRNAs as decision-ma...
Synthetic in vivomolecular ‘computers ’ could rewire biological processes by establishing programmab...
Synthetic in vivomolecular ‘computers ’ could rewire biological processes by establishing programmab...
Biological computing circuits can enhance our ability to control cellular functions and have poten-t...
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...
Our ability to efficiently and predictably program cells is central to the fields of bioengineering ...
Synthetic mRNA is an attractive vehicle for gene therapies because of its transient nature and impro...
Synthetic in vivo molecular ‘computers’ could rewire biological processes by establishing programmab...
Synthetic biology aims at (re-)programming living cells like computers to perform new functions for ...
Cell-specific targeting of therapeutics is a fundamental challenge in biomedicine. The use of engine...
Cell-specific targeting of therapeutics is a fundamental challenge in biomedicine. The use of engine...
<div><p>Synthetic biology aims at (re-)programming living cells like computers to perform new functi...
RNA molecules lie at the heart of living organisms where they are associated with most of the cellul...
Synthetic in vivomolecular ‘computers ’ could rewire biological processes by establishing programmab...
RNA interference is a natural gene expression silencing system that appears throughout the tree of l...
Synthetic in vivomolecular ‘computers ’ could rewire biological processes by establishing programmab...
Synthetic in vivomolecular ‘computers ’ could rewire biological processes by establishing programmab...
Biological computing circuits can enhance our ability to control cellular functions and have poten-t...
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...
Our ability to efficiently and predictably program cells is central to the fields of bioengineering ...
Synthetic mRNA is an attractive vehicle for gene therapies because of its transient nature and impro...
Synthetic in vivo molecular ‘computers’ could rewire biological processes by establishing programmab...
Synthetic biology aims at (re-)programming living cells like computers to perform new functions for ...
Cell-specific targeting of therapeutics is a fundamental challenge in biomedicine. The use of engine...
Cell-specific targeting of therapeutics is a fundamental challenge in biomedicine. The use of engine...
<div><p>Synthetic biology aims at (re-)programming living cells like computers to perform new functi...
RNA molecules lie at the heart of living organisms where they are associated with most of the cellul...
Synthetic in vivomolecular ‘computers ’ could rewire biological processes by establishing programmab...
RNA interference is a natural gene expression silencing system that appears throughout the tree of l...
Synthetic in vivomolecular ‘computers ’ could rewire biological processes by establishing programmab...
Synthetic in vivomolecular ‘computers ’ could rewire biological processes by establishing programmab...
Biological computing circuits can enhance our ability to control cellular functions and have poten-t...