Biological mixtures such as the cytosol may consist of thousands of distinct components. There is now a substantial body of evidence showing that, under physiological conditions, intracellular mixtures can phase separate into spatially distinct regions with differing compositions. In this article we present numerical evidence indicating that such spontaneous compartmentalization exploits general features of the phase diagram of a multicomponent biomolecular mixture. In particular, we show that demixed domains are likely to segregate when the variance in the intermolecular interaction strengths exceeds a well-defined threshold. Multiple distinct phases are likely to become stable under very similar conditions, which can then be tuned to achi...
Numerous processes occur simultaneously in the cell both for normal function and in response to chan...
Compartmentalization is a theme used throughout all kingdoms of biology to create functionally disti...
AbstractUnderstanding the phase behavior of biological membranes is helped by the study of more simp...
Eukaryotic cells are complex structures capable of coordinating numerous biochemical reactions in sp...
Phase separation has emerged as an essential concept for the spatial organization inside biological ...
Biomolecular condensates in cells are often rich in catalytically active enzymes. This is particular...
Phase separation has emerged as an essential concept for the spatial organization inside biological ...
Interactions among the multitude of macromolecules populating the cytoplasm can lead to the emergenc...
Understanding the (de)mixing behavior of multicomponent lipid bilayers is an important step toward ...
The ability to separate enzymes, or cells or viruses, from a mixture is important and can be realize...
AbstractThe macromolecular diversity and concentrations in the fluid phase of cytoplasm constitute c...
Phase separation has long been observed within aqueous mixtures of two or more different compounds, ...
Phase separation and transitions among different molecular states are ubiquitous in living cells. Su...
AbstractThe macromolecular diversity and concentrations in the fluid phase of cytoplasm constitute c...
Thesis (Ph.D.)--University of Washington, 2017-08Controversy has long surrounded the question of whe...
Numerous processes occur simultaneously in the cell both for normal function and in response to chan...
Compartmentalization is a theme used throughout all kingdoms of biology to create functionally disti...
AbstractUnderstanding the phase behavior of biological membranes is helped by the study of more simp...
Eukaryotic cells are complex structures capable of coordinating numerous biochemical reactions in sp...
Phase separation has emerged as an essential concept for the spatial organization inside biological ...
Biomolecular condensates in cells are often rich in catalytically active enzymes. This is particular...
Phase separation has emerged as an essential concept for the spatial organization inside biological ...
Interactions among the multitude of macromolecules populating the cytoplasm can lead to the emergenc...
Understanding the (de)mixing behavior of multicomponent lipid bilayers is an important step toward ...
The ability to separate enzymes, or cells or viruses, from a mixture is important and can be realize...
AbstractThe macromolecular diversity and concentrations in the fluid phase of cytoplasm constitute c...
Phase separation has long been observed within aqueous mixtures of two or more different compounds, ...
Phase separation and transitions among different molecular states are ubiquitous in living cells. Su...
AbstractThe macromolecular diversity and concentrations in the fluid phase of cytoplasm constitute c...
Thesis (Ph.D.)--University of Washington, 2017-08Controversy has long surrounded the question of whe...
Numerous processes occur simultaneously in the cell both for normal function and in response to chan...
Compartmentalization is a theme used throughout all kingdoms of biology to create functionally disti...
AbstractUnderstanding the phase behavior of biological membranes is helped by the study of more simp...