In order to migrate over large distances, cells within tissues and organisms rely on sensing local gradient cues which are irregular, conflicting, and changing over time and space. The mechanism how they generate persistent directional migration when signals are disrupted, while still remaining adaptive to signal's localization changes remain unknown. Here we find that single cells utilize a molecular mechanism akin to a working memory to satisfy these two opposing demands. We derive theoretically that this is characteristic for receptor networks maintained away from steady states. Time-resolved live-cell imaging of Epidermal growth factor receptor (EGFR) phosphorylation dynamics shows that cells transiently memorize position of encountered...
The directed migration of cell collectives is a driving force of embryogenesis. The predominant view...
Pattern formation through reaction-diffusion of proteins is core to establishing functionally distin...
When cells migrate, they need to coordinate multiple signaling pathways in space and time to orchest...
Chemotaxis, the directional migration of cells in a chemical gradient, is robust to fluctuations ass...
How cells utilize surface receptors for chemoreception is a recurrent question spanning between phys...
AbstractIt has long been appreciated that spatiotemporal dynamics of cell migration are under the co...
AbstractRecent studies have suggested that autocrine signaling through epidermal growth factor recep...
SummaryBackgroundMany cells are remarkably proficient at tracking very shallow chemical gradients, d...
AbstractRecent studies have suggested that autocrine signaling through epidermal growth factor recep...
Navigation of dendritic cells (DCs) from the site of infection to lymphoid organs is guided by conce...
AbstractIt has long been appreciated that spatiotemporal dynamics of cell migration are under the co...
Many cells are remarkably proficient at tracking very shallow chemical gradients, despite considerab...
SummaryIn animals, many cells reach their destinations by migrating toward higher concentrations of ...
The directed migration of cell collectives is a driving force of embryogenesis. The predominant view...
Many cells are remarkably proficient at tracking very shallow chemical gradients, despite considerab...
The directed migration of cell collectives is a driving force of embryogenesis. The predominant view...
Pattern formation through reaction-diffusion of proteins is core to establishing functionally distin...
When cells migrate, they need to coordinate multiple signaling pathways in space and time to orchest...
Chemotaxis, the directional migration of cells in a chemical gradient, is robust to fluctuations ass...
How cells utilize surface receptors for chemoreception is a recurrent question spanning between phys...
AbstractIt has long been appreciated that spatiotemporal dynamics of cell migration are under the co...
AbstractRecent studies have suggested that autocrine signaling through epidermal growth factor recep...
SummaryBackgroundMany cells are remarkably proficient at tracking very shallow chemical gradients, d...
AbstractRecent studies have suggested that autocrine signaling through epidermal growth factor recep...
Navigation of dendritic cells (DCs) from the site of infection to lymphoid organs is guided by conce...
AbstractIt has long been appreciated that spatiotemporal dynamics of cell migration are under the co...
Many cells are remarkably proficient at tracking very shallow chemical gradients, despite considerab...
SummaryIn animals, many cells reach their destinations by migrating toward higher concentrations of ...
The directed migration of cell collectives is a driving force of embryogenesis. The predominant view...
Many cells are remarkably proficient at tracking very shallow chemical gradients, despite considerab...
The directed migration of cell collectives is a driving force of embryogenesis. The predominant view...
Pattern formation through reaction-diffusion of proteins is core to establishing functionally distin...
When cells migrate, they need to coordinate multiple signaling pathways in space and time to orchest...