We introduce a simple physical picture to explain the process of molecular sorting, whereby specific proteins are concentrated and distilled into submicrometric lipid vesicles in eukaryotic cells. To this purpose, we formulate a model based on the coupling of spontaneous molecular aggregation with vesicle nucleation. Its implications are studied by means of a phenomenological theory describing the diffusion of molecules toward multiple sorting centers that grow due to molecule absorption and are extracted when they reach a sufficiently large size. The predictions of the theory are compared with numerical simulations of a lattice-gas realization of the model and with experimental observations. The efficiency of the distillation process is fo...
Organized complexity is a hallmark of biology in general, and eukaryotes in particular. This phenome...
Self-organization of cells is central to a variety of biological systems and physical concepts of co...
Inclusions in biological membranes may interact via deformations they induce on the shape of that ve...
Molecular sorting is a fundamental process that allows eukaryotic cells to distill and concentrate s...
The organelles in a eukaryotic cell are linked by a constant flow of vesicles, budding off from one ...
How are lipid molecules sorted between organelles in eukaryotic cells? A recent paper shows that the...
Cells regulate when and where molecular reactions occur; to do this, cells limit the interaction of ...
AbstractThe sorting of lipids and proteins in cellular trafficking pathways is a process of central ...
International audienceSorting of lipids and proteins is a key process allowing eukaryotic cells to e...
We provide a protocol for in vitro self-organization assays of MinD and MinE on a supported lipid bi...
The structure-driven assembly of multimeric protein complexes and the formation of intracellular pha...
AbstractThe intricate and tightly regulated organization of eukaryotic cells into spatially and func...
Biochemical processes inside living cells take place in a confined and highly crowded environment. A...
Eukaryotic cells are highly compartmentalized into intracellular organelles, such as the endoplasmic...
Cell membranes are comprised of multicomponent lipid and protein mixtures that exhibit a complex par...
Organized complexity is a hallmark of biology in general, and eukaryotes in particular. This phenome...
Self-organization of cells is central to a variety of biological systems and physical concepts of co...
Inclusions in biological membranes may interact via deformations they induce on the shape of that ve...
Molecular sorting is a fundamental process that allows eukaryotic cells to distill and concentrate s...
The organelles in a eukaryotic cell are linked by a constant flow of vesicles, budding off from one ...
How are lipid molecules sorted between organelles in eukaryotic cells? A recent paper shows that the...
Cells regulate when and where molecular reactions occur; to do this, cells limit the interaction of ...
AbstractThe sorting of lipids and proteins in cellular trafficking pathways is a process of central ...
International audienceSorting of lipids and proteins is a key process allowing eukaryotic cells to e...
We provide a protocol for in vitro self-organization assays of MinD and MinE on a supported lipid bi...
The structure-driven assembly of multimeric protein complexes and the formation of intracellular pha...
AbstractThe intricate and tightly regulated organization of eukaryotic cells into spatially and func...
Biochemical processes inside living cells take place in a confined and highly crowded environment. A...
Eukaryotic cells are highly compartmentalized into intracellular organelles, such as the endoplasmic...
Cell membranes are comprised of multicomponent lipid and protein mixtures that exhibit a complex par...
Organized complexity is a hallmark of biology in general, and eukaryotes in particular. This phenome...
Self-organization of cells is central to a variety of biological systems and physical concepts of co...
Inclusions in biological membranes may interact via deformations they induce on the shape of that ve...