Life is sustained by complex systems operating far from equilibrium and consisting of a multitude of enzymatic reaction networks. The operating principles of biology's regulatory networks are known, but the in vitro assembly of out-of-equilibrium enzymatic reaction networks has proved challenging, limiting the development of synthetic systems showing autonomous behaviour. Here, we present a strategy for the rational design of programmable functional reaction networks that exhibit dynamic behaviour. We demonstrate that a network built around autoactivation and delayed negative feedback of the enzyme ¿trypsin is capable of producing sustained oscillating concentrations of active ¿trypsin for over 65 h. Other functions, such as amplification, ...
We consider a biological cell as a highly nterconnected network of chemical reactions, which is cons...
Every living cell is a compartmentalized out-ofequilibrium system exquisitely able to convert chemic...
One of the grand challenges in contemporary systems chemistry research is to mimic life-like functio...
Life is sustained by complex systems operating far from equilibrium and consisting of a multitude of...
Life is sustained by complex systems operating far from equilibrium and consisting of a multitude of...
Life is sustained by complex systems operating far from equilibrium and consisting of a multitude of...
Life is sustained by complex systems operating far from equilibrium and consisting of a multitude of...
Life is sustained by complex systems operating far from equilibrium and consisting of a multitude of...
Every living cell is a compartmentalized out-ofequilibrium system exquisitely able to convert chemic...
Every living cell is a compartmentalized out-ofequilibrium system exquisitely able to convert chemic...
Every living cell is a compartmentalized out-ofequilibrium system exquisitely able to convert chemic...
Every living cell is a compartmentalized out-ofequilibrium system exquisitely able to convert chemic...
Contains fulltext : 140116.pdf (publisher's version ) (Closed access
The functionalities of every living organism are wired in the biochemical interactions among protein...
We consider a biological cell as a highly nterconnected network of chemical reactions, which is cons...
We consider a biological cell as a highly nterconnected network of chemical reactions, which is cons...
Every living cell is a compartmentalized out-ofequilibrium system exquisitely able to convert chemic...
One of the grand challenges in contemporary systems chemistry research is to mimic life-like functio...
Life is sustained by complex systems operating far from equilibrium and consisting of a multitude of...
Life is sustained by complex systems operating far from equilibrium and consisting of a multitude of...
Life is sustained by complex systems operating far from equilibrium and consisting of a multitude of...
Life is sustained by complex systems operating far from equilibrium and consisting of a multitude of...
Life is sustained by complex systems operating far from equilibrium and consisting of a multitude of...
Every living cell is a compartmentalized out-ofequilibrium system exquisitely able to convert chemic...
Every living cell is a compartmentalized out-ofequilibrium system exquisitely able to convert chemic...
Every living cell is a compartmentalized out-ofequilibrium system exquisitely able to convert chemic...
Every living cell is a compartmentalized out-ofequilibrium system exquisitely able to convert chemic...
Contains fulltext : 140116.pdf (publisher's version ) (Closed access
The functionalities of every living organism are wired in the biochemical interactions among protein...
We consider a biological cell as a highly nterconnected network of chemical reactions, which is cons...
We consider a biological cell as a highly nterconnected network of chemical reactions, which is cons...
Every living cell is a compartmentalized out-ofequilibrium system exquisitely able to convert chemic...
One of the grand challenges in contemporary systems chemistry research is to mimic life-like functio...