Many computational models for analyzing and predicting cell physiology rely on in vitro data collected in dilute and controlled buffer solutions. However, this can mislead models because up to 40% of the intracellular volume-depending on the organism, the physiology, and the cellular compartment-is occupied by a dense mixture of proteins, lipids, polysaccharides, RNA, and DNA. These intracellular macromolecules interfere with the interactions of enzymes and their reactants and thus affect the kinetics of biochemical reactions, making in vivo reactions considerably more complex than the in vitro data indicates. In this work, we present a new, to our knowledge, type of kinetics that captures and quantifies the effect of volume exclusion and o...
AbstractWe present a general-purpose model for biomolecular simulations at the molecular level that ...
<div><p>The cytosol of a cell is a concentrated milieu of a variety of different molecules, includin...
We perform Monte Carlo simulations in three-dimensional (3D) lattice in order to study diffusion-con...
Molecular crowding is ubiquitous within cells and affects many biological processes including protei...
We present a general-purpose model for biomolecular simulations at the molecular level that incorpor...
We present a general-purpose model for biomolecular simulations at the molecular level that incorpor...
AbstractWe present a general-purpose model for biomolecular simulations at the molecular level that ...
Whether one aims to design treatments for diseases such as cancer or diabetes, engineer cells to pro...
Using Monte Carlo simulations in 3D media we investigate the effect of macromolecular crowding on bi...
Macromolecular crowding are innate to cellular environment. Understanding their effect on cellular c...
Macromolecular crowding are innate to cellular environment. Understanding their effect on cellular c...
Background In this paper we apply a novel agent-based simulation method in order to model intracell...
We perform Monte Carlo simulations in three-dimensional (3D) lattice in order to study diffusion-con...
Molecular crowding is ubiquitous within cells and affects many biological processes including protei...
In the present work, the volume exclusion phenomenon, also known as macromolecular crowding, has bee...
AbstractWe present a general-purpose model for biomolecular simulations at the molecular level that ...
<div><p>The cytosol of a cell is a concentrated milieu of a variety of different molecules, includin...
We perform Monte Carlo simulations in three-dimensional (3D) lattice in order to study diffusion-con...
Molecular crowding is ubiquitous within cells and affects many biological processes including protei...
We present a general-purpose model for biomolecular simulations at the molecular level that incorpor...
We present a general-purpose model for biomolecular simulations at the molecular level that incorpor...
AbstractWe present a general-purpose model for biomolecular simulations at the molecular level that ...
Whether one aims to design treatments for diseases such as cancer or diabetes, engineer cells to pro...
Using Monte Carlo simulations in 3D media we investigate the effect of macromolecular crowding on bi...
Macromolecular crowding are innate to cellular environment. Understanding their effect on cellular c...
Macromolecular crowding are innate to cellular environment. Understanding their effect on cellular c...
Background In this paper we apply a novel agent-based simulation method in order to model intracell...
We perform Monte Carlo simulations in three-dimensional (3D) lattice in order to study diffusion-con...
Molecular crowding is ubiquitous within cells and affects many biological processes including protei...
In the present work, the volume exclusion phenomenon, also known as macromolecular crowding, has bee...
AbstractWe present a general-purpose model for biomolecular simulations at the molecular level that ...
<div><p>The cytosol of a cell is a concentrated milieu of a variety of different molecules, includin...
We perform Monte Carlo simulations in three-dimensional (3D) lattice in order to study diffusion-con...