Coupled compartmentalised information processing and communication via molecular diffusion underpin network based population dynamics as observed in biological systems. Understanding how both compartmentalisation and communication can regulate information processes is key to rational design and control of compartmentalised reaction networks. Here, we integrate PEN DNA reactions into semi-permeable proteinosomes and characterise the effect of compartmentalisation on autocatalytic PEN DNA reactions. We observe unique behaviours in the compartmentalised systems which are not accessible under bulk conditions; for example, rates of reaction increase by an order of magnitude and reaction kinetics are more readily tuneable by enzyme concentrations...
Living cells maintain a steady state of biochemical reaction rates by exchanging energy and matter w...
International audienceWe introduce a DNA-based reaction-diffusion (RD) system in which reaction and ...
Every living cell is a compartmentalized out-of-equilibrium system exquisitely able to convert chemi...
In biological systems, chemical activity takes place in micrometerand nanometer-sized compartments t...
Whether one aims to design treatments for diseases such as cancer or diabetes, engineer cells to pro...
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...
Quantitative conceptual tools dealing with control and regulation of cellular processes have been mo...
Every living cell is a compartmentalized out-ofequilibrium system exquisitely able to convert chemic...
Quantitative conceptual tools dealing with control and regulation of cellular processes have been mo...
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...
Chemical reactions make cells work only if the participating chemicals are delivered to desired loca...
Biochemical reaction networks consisting of coupled enzymes connect substrate signaling events with ...
Abstract. Cellular automata simulations for enzymatic reaction networks differ from other models for...
Living cells maintain a steady state of biochemical reaction rates by exchanging energy and matter w...
International audienceWe introduce a DNA-based reaction-diffusion (RD) system in which reaction and ...
Every living cell is a compartmentalized out-of-equilibrium system exquisitely able to convert chemi...
In biological systems, chemical activity takes place in micrometerand nanometer-sized compartments t...
Whether one aims to design treatments for diseases such as cancer or diabetes, engineer cells to pro...
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...
Quantitative conceptual tools dealing with control and regulation of cellular processes have been mo...
Every living cell is a compartmentalized out-ofequilibrium system exquisitely able to convert chemic...
Quantitative conceptual tools dealing with control and regulation of cellular processes have been mo...
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...
Chemical reactions make cells work only if the participating chemicals are delivered to desired loca...
Biochemical reaction networks consisting of coupled enzymes connect substrate signaling events with ...
Abstract. Cellular automata simulations for enzymatic reaction networks differ from other models for...
Living cells maintain a steady state of biochemical reaction rates by exchanging energy and matter w...
International audienceWe introduce a DNA-based reaction-diffusion (RD) system in which reaction and ...
Every living cell is a compartmentalized out-of-equilibrium system exquisitely able to convert chemi...