Phase separation has emerged as an essential concept for the spatial organization inside biological cells. However, despite the clear relevance to virtually all physiological functions, we understand surprisingly little about what phases form in a system of many interacting components, like in cells. Here we introduce a numerical method based on physical relaxation dynamics to study the coexisting phases in such systems. We use our approach to optimize interactions between components, similar to how evolution might have optimized the interactions of proteins. These evolved interactions robustly lead to a defined number of phases, despite substantial uncertainties in the initial composition, while random or designed interactions perform much...
Spatial organization of chemical processes is a widely accepted requirement for living systems. Cell...
Disordered proteins and nucleic acids can condense into droplets that resemble the membraneless orga...
Many intrinsically disordered proteins (IDPs) may undergo liquid-liquid phase separation (LLPS) and ...
Phase separation has emerged as an essential concept for the spatial organization inside biological ...
Biological mixtures such as the cytosol may consist of thousands of distinct components. There is no...
The capacity of proteins to interact specifically with one another underlies our conceptual understa...
Rationally and efficiently modifying the amino-acid sequence of proteins to control their ability to...
Rationally and efficiently modifying the amino-acid sequence of proteins to control their ability to...
: How do proteins interact in the cellular environment? Which interactions stabilize liquid-liquid p...
Membraneless organelles important to intracellular compartmentalization have recently been shown to ...
Biomolecular condensates in cells are often rich in catalytically active enzymes. This is particular...
© 2018 National Academy of Sciences. All rights reserved. A hallmark of biological systems is that p...
© 2018 National Academy of Sciences. All rights reserved. A hallmark of biological systems is that p...
Protein self-organization is a hallmark of biological systems. Although the physicochemical principl...
Interactions among the multitude of macromolecules populating the cytoplasm can lead to the emergenc...
Spatial organization of chemical processes is a widely accepted requirement for living systems. Cell...
Disordered proteins and nucleic acids can condense into droplets that resemble the membraneless orga...
Many intrinsically disordered proteins (IDPs) may undergo liquid-liquid phase separation (LLPS) and ...
Phase separation has emerged as an essential concept for the spatial organization inside biological ...
Biological mixtures such as the cytosol may consist of thousands of distinct components. There is no...
The capacity of proteins to interact specifically with one another underlies our conceptual understa...
Rationally and efficiently modifying the amino-acid sequence of proteins to control their ability to...
Rationally and efficiently modifying the amino-acid sequence of proteins to control their ability to...
: How do proteins interact in the cellular environment? Which interactions stabilize liquid-liquid p...
Membraneless organelles important to intracellular compartmentalization have recently been shown to ...
Biomolecular condensates in cells are often rich in catalytically active enzymes. This is particular...
© 2018 National Academy of Sciences. All rights reserved. A hallmark of biological systems is that p...
© 2018 National Academy of Sciences. All rights reserved. A hallmark of biological systems is that p...
Protein self-organization is a hallmark of biological systems. Although the physicochemical principl...
Interactions among the multitude of macromolecules populating the cytoplasm can lead to the emergenc...
Spatial organization of chemical processes is a widely accepted requirement for living systems. Cell...
Disordered proteins and nucleic acids can condense into droplets that resemble the membraneless orga...
Many intrinsically disordered proteins (IDPs) may undergo liquid-liquid phase separation (LLPS) and ...