SummaryDiverse cell types require the ability to maintain dynamically polarized membrane-protein distributions through balancing transport and diffusion. However, design principles underlying dynamically maintained cortical polarity are not well understood. Here we constructed a mathematical model for characterizing the morphology of dynamically polarized protein distributions. We developed analytical approaches for measuring all model parameters from single-cell experiments. We applied our methods to a well-characterized system for studying polarized membrane proteins: budding yeast cells expressing activated Cdc42. We found that a balance of diffusion, directed transport, and endocytosis was sufficient for accurately describing polarizati...
Exocytosis is the major mechanism by which new membrane components are delivered to the cell surface...
Spontaneous pattern formation in Turing systems relies on feedback. But patterns in cells and tissue...
15 pagesA cell is polarised when it has developed a main axis of organisation through the reorganisa...
SummaryDiverse cell types require the ability to maintain dynamically polarized membrane-protein dis...
AbstractMany cells show a polarized distribution of some plasma membrane proteins, which may be main...
The establishment of cell architecture, whether in a migrating cell, a polarized epithelial cell, or...
Formation of a stable polarity axis underlies numerous biological processes. Here, using high-resolu...
In silico experiments bear the potential for further understanding of biological transport processes...
Cell polarity is a fundamental phenomenon underlying processes such as asymmetric cell division, tis...
Polar (directional) cell growth, a key cellular mechanism shared among a wide range of species, reli...
Even the simplest cells show a remarkable degree of intracellular patterning. Like developing multic...
Abstract. We present a stochastic model of active vesicular transport and its role in cell polarizat...
20 pagesWhen it is polarised, a cell develops an asymmetric distribution of specific molecular marke...
In the Caenorhabditis elegans zygote, PAR protein patterns, driven by mutual anatagonism, determine ...
Exocytosis is the major mechanism by which new membrane components are delivered to the cell surface...
Spontaneous pattern formation in Turing systems relies on feedback. But patterns in cells and tissue...
15 pagesA cell is polarised when it has developed a main axis of organisation through the reorganisa...
SummaryDiverse cell types require the ability to maintain dynamically polarized membrane-protein dis...
AbstractMany cells show a polarized distribution of some plasma membrane proteins, which may be main...
The establishment of cell architecture, whether in a migrating cell, a polarized epithelial cell, or...
Formation of a stable polarity axis underlies numerous biological processes. Here, using high-resolu...
In silico experiments bear the potential for further understanding of biological transport processes...
Cell polarity is a fundamental phenomenon underlying processes such as asymmetric cell division, tis...
Polar (directional) cell growth, a key cellular mechanism shared among a wide range of species, reli...
Even the simplest cells show a remarkable degree of intracellular patterning. Like developing multic...
Abstract. We present a stochastic model of active vesicular transport and its role in cell polarizat...
20 pagesWhen it is polarised, a cell develops an asymmetric distribution of specific molecular marke...
In the Caenorhabditis elegans zygote, PAR protein patterns, driven by mutual anatagonism, determine ...
Exocytosis is the major mechanism by which new membrane components are delivered to the cell surface...
Spontaneous pattern formation in Turing systems relies on feedback. But patterns in cells and tissue...
15 pagesA cell is polarised when it has developed a main axis of organisation through the reorganisa...