Our understanding of cells has progressed rapidly in recent years, mainly because of technological advances. Modern technology now allows us to observe molecular processes in living cells with high spatial and temporal resolution. At the same time, we are beginning to compile the molecular parts list of cells. However, how all these parts work together to yield complex cellular behavior is still unclear. In addition, the established paradigm of molecular biology, which sees proteins as well-folded enzymes that undergo specific lock-and-key type interactions, is increasingly being challenged. In fact, it is now becoming clear that many proteins do not fold into three-dimensional structures and additionally show highly promiscuous binding beh...
Macromolecular crowding (MMC) is an intrinsic and ubiquitous feature in biological cells. We find MM...
Biomolecular condensates are membraneless intracellular assemblies that often form via liquid-liquid...
Over the past years, liquid-liquid phase separation (LLPS) has emerged as a ubiquitous principle of ...
Protein conformation and cell compartmentalization are fundamental concepts and subjects of vast sci...
Compartmentalization is a characterizing feature of complexity in cells, used to organize their bioc...
Cells regulate when and where molecular reactions occur; to do this, cells limit the interaction of ...
The crowded interior of a living cell makes performing experiments on simpler in vitro systems attra...
Compartmentalization is a characterizing feature of complexity in cells, used to organize their bioc...
Biomolecular condensates are micron-scale compartments in eukaryotic cells that lack surrounding mem...
AbstractThe physicochemical properties of cellular environments with a high macromolecular content h...
Liquid-liquid phase separation is a key organizational principle in eukaryotic cells, on par with in...
Biochemical processes inside living cells take place in a confined and highly crowded environment. A...
Inside the cells of every living thing on Earth, there are millions of proteins—the molecular movers...
Liquid-liquid phase separation is a key organizational principle in eukaryotic cells, on par with in...
AbstractTraditionally, biochemical studies are performed in dilute homogenous solutions, which are v...
Macromolecular crowding (MMC) is an intrinsic and ubiquitous feature in biological cells. We find MM...
Biomolecular condensates are membraneless intracellular assemblies that often form via liquid-liquid...
Over the past years, liquid-liquid phase separation (LLPS) has emerged as a ubiquitous principle of ...
Protein conformation and cell compartmentalization are fundamental concepts and subjects of vast sci...
Compartmentalization is a characterizing feature of complexity in cells, used to organize their bioc...
Cells regulate when and where molecular reactions occur; to do this, cells limit the interaction of ...
The crowded interior of a living cell makes performing experiments on simpler in vitro systems attra...
Compartmentalization is a characterizing feature of complexity in cells, used to organize their bioc...
Biomolecular condensates are micron-scale compartments in eukaryotic cells that lack surrounding mem...
AbstractThe physicochemical properties of cellular environments with a high macromolecular content h...
Liquid-liquid phase separation is a key organizational principle in eukaryotic cells, on par with in...
Biochemical processes inside living cells take place in a confined and highly crowded environment. A...
Inside the cells of every living thing on Earth, there are millions of proteins—the molecular movers...
Liquid-liquid phase separation is a key organizational principle in eukaryotic cells, on par with in...
AbstractTraditionally, biochemical studies are performed in dilute homogenous solutions, which are v...
Macromolecular crowding (MMC) is an intrinsic and ubiquitous feature in biological cells. We find MM...
Biomolecular condensates are membraneless intracellular assemblies that often form via liquid-liquid...
Over the past years, liquid-liquid phase separation (LLPS) has emerged as a ubiquitous principle of ...