Chemical reactions inside cells occur in compartment volumes in the range of atto- to femtoliters. Physiological concentrations realized in such small volumes imply low copy numbers of interacting molecules with the consequence of considerable fluctuations in the concentrations. In contrast, rate equation models are based on the implicit assumption of infinitely large numbers of interacting molecules, or equivalently, that reactions occur in infinite volumes at constant macroscopic concentrations. In this article we compute the finite-volume corrections (or equivalently the finite copy number corrections) to the solutions of the rate equations for chemical reaction networks composed of arbitrarily large numbers of enzyme-catalyzed reactions...
Whether one aims to design treatments for diseases such as cancer or diabetes, engineer cells to pro...
The ability to dynamically probe single enzymes allows the experimental investigation of enzyme kine...
AbstractMany physiological characteristics of living cells are regulated by protein interaction netw...
BACKGROUND: It is well known that the deterministic dynamics of biochemical reaction networks can be...
Experimental studies have shown that the protein abundance in living cells varies from few tens to ...
It is commonly believed that, whenever timescale separation holds, the predictions of reduced chemic...
none4siMany biochemical networks have complex multidimensional dynamics and there is a long history ...
Single enzyme molecules display inevitable, stochastic fluctuations in their catalytic activity. In ...
Molecular discreteness is apparent in small-volume chemical systems, such as biological cells, leadi...
The paper outlines a general approach to deriving quasi-steady-state approximations (QSSAs) of the s...
The paper outlines a general approach to deriving quasi-steady-state approximations (QSSAs) of the s...
AbstractMany physiological characteristics of living cells are regulated by protein interaction netw...
AbstractSingle enzyme molecules display inevitable, stochastic fluctuations in their catalytic activ...
Analysis of the dynamic and steady-state properties of biochemical networks hinges on information ab...
AbstractThe supply and consumption of metabolites in living cells are catalyzed by enzymes. Here we ...
Whether one aims to design treatments for diseases such as cancer or diabetes, engineer cells to pro...
The ability to dynamically probe single enzymes allows the experimental investigation of enzyme kine...
AbstractMany physiological characteristics of living cells are regulated by protein interaction netw...
BACKGROUND: It is well known that the deterministic dynamics of biochemical reaction networks can be...
Experimental studies have shown that the protein abundance in living cells varies from few tens to ...
It is commonly believed that, whenever timescale separation holds, the predictions of reduced chemic...
none4siMany biochemical networks have complex multidimensional dynamics and there is a long history ...
Single enzyme molecules display inevitable, stochastic fluctuations in their catalytic activity. In ...
Molecular discreteness is apparent in small-volume chemical systems, such as biological cells, leadi...
The paper outlines a general approach to deriving quasi-steady-state approximations (QSSAs) of the s...
The paper outlines a general approach to deriving quasi-steady-state approximations (QSSAs) of the s...
AbstractMany physiological characteristics of living cells are regulated by protein interaction netw...
AbstractSingle enzyme molecules display inevitable, stochastic fluctuations in their catalytic activ...
Analysis of the dynamic and steady-state properties of biochemical networks hinges on information ab...
AbstractThe supply and consumption of metabolites in living cells are catalyzed by enzymes. Here we ...
Whether one aims to design treatments for diseases such as cancer or diabetes, engineer cells to pro...
The ability to dynamically probe single enzymes allows the experimental investigation of enzyme kine...
AbstractMany physiological characteristics of living cells are regulated by protein interaction netw...