Computer simulation can provide valuable insight into the forces driving biomolecular liquid-liquid phase separation. However, the simulated systems have a limited size, which makes it important to minimize and control finite-size effects. Here, using a phenomenological free-energy ansatz, we investigate how the single-phase densities observed in a canonical system under coexistence conditions depend on the system size and the total density. We compare the theoretical expectations with results from Monte Carlo simulations based on a simple hydrophobic/polar protein model. We consider both cubic systems with spherical droplets and elongated systems with slab-like droplets. The results presented suggest that the slab simulation method greatly...
Phospholipid membranes surround the cell and its internal organelles, and their multicomponent natur...
Phospholipid membranes surround the cell and its internal organelles, and their multicomponent natur...
Liquid-liquid phase separation is ubiquitous in everyday life, such as formation of oil droplets in ...
Computer simulation can provide valuable insight into the forces driving biomolecular liquid-liquid ...
The formation of biomolecular condensates inside cells often involve intrinsically disordered protei...
Disordered proteins and nucleic acids can condense into droplets that resemble the membraneless orga...
Disordered proteins and nucleic acids can condense into droplets that resemble the membraneless orga...
Membraneless organelles important to intracellular compartmentalization have recently been shown to ...
Field-theory simulation by the complex Langevin method offers an alternative to conventional samplin...
The nucleation of protein condensates is a concentration-driven process of assembly. When modeled in...
The nucleation of protein condensates is a concentration-driven process of assembly. When modeled in...
The nucleation of protein condensates is a concentration-driven process of assembly. When modeled in...
Field-theory simulation by the complex Langevin method offers an alternative to conventional samplin...
The effect of molecule size (excluded volume) and the range of interaction on the surface tension, p...
The binary liquid phase separation of aqueous solutions of ␥-crystallins is utilized to gain insight...
Phospholipid membranes surround the cell and its internal organelles, and their multicomponent natur...
Phospholipid membranes surround the cell and its internal organelles, and their multicomponent natur...
Liquid-liquid phase separation is ubiquitous in everyday life, such as formation of oil droplets in ...
Computer simulation can provide valuable insight into the forces driving biomolecular liquid-liquid ...
The formation of biomolecular condensates inside cells often involve intrinsically disordered protei...
Disordered proteins and nucleic acids can condense into droplets that resemble the membraneless orga...
Disordered proteins and nucleic acids can condense into droplets that resemble the membraneless orga...
Membraneless organelles important to intracellular compartmentalization have recently been shown to ...
Field-theory simulation by the complex Langevin method offers an alternative to conventional samplin...
The nucleation of protein condensates is a concentration-driven process of assembly. When modeled in...
The nucleation of protein condensates is a concentration-driven process of assembly. When modeled in...
The nucleation of protein condensates is a concentration-driven process of assembly. When modeled in...
Field-theory simulation by the complex Langevin method offers an alternative to conventional samplin...
The effect of molecule size (excluded volume) and the range of interaction on the surface tension, p...
The binary liquid phase separation of aqueous solutions of ␥-crystallins is utilized to gain insight...
Phospholipid membranes surround the cell and its internal organelles, and their multicomponent natur...
Phospholipid membranes surround the cell and its internal organelles, and their multicomponent natur...
Liquid-liquid phase separation is ubiquitous in everyday life, such as formation of oil droplets in ...