SummaryMigrating fibroblasts undergo contact inhibition of locomotion (CIL), a process that was discovered five decades ago and still is not fully understood at the molecular level. We identify the Slit2-Robo4-srGAP2 signaling network as a key regulator of CIL in fibroblasts. CIL involves highly dynamic contact protrusions with a specialized actin cytoskeleton that stochastically explore cell-cell overlaps between colliding fibroblasts. A membrane curvature-sensing F-BAR domain pre-localizes srGAP2 to protruding edges and terminates their extension phase in response to cell collision. A FRET-based biosensor reveals that Rac1 activity is focused in a band at the tip of contact protrusions, in contrast to the broad activation gradient in cont...
peer reviewedThe GTP-binding proteins RhoA, Cdc42 and Rac1 regulate the organization and turnover of...
Sustained forward migration through a fibrillar extracellular matrix requires localization of protru...
SummarysrGAP proteins regulate cell migration and morphogenesis by shaping the structure and dynamic...
Migrating fibroblasts undergo contact inhibition of locomotion (CIL), a process that was discovered ...
Contact inhibition of locomotion (CIL) is the process by which cells in vitro change their direction...
Contact inhibition of locomotion drives a variety of biological phenomenon, from cell dispersion to ...
Contact inhibition of locomotion drives a variety of biological phenomenon, from cell dispersion to ...
AbstractBackground: Substrate anchorage and cell locomotion entail the initiation and development of...
Coordination of membrane deformation and cytoskeletal dynamics lies at the heart of many biological ...
Contact inhibition of locomotion (CIL) is a multifaceted process that causes many cell types to repe...
AbstractContact inhibition of locomotion (CIL) occurs when a cell ceases moving in the same directio...
Contact inhibition of locomotion (CIL) is a process whereby a cell ceases motility or changes its t...
SummaryContact inhibition of locomotion (CIL) is a multifaceted process that causes many cell types ...
The three canonical Rho GTPases RhoA, Rac1 and Cdc42 co-ordinate cytoskeletal dynamics. Recent studi...
Cell migration in wound healing and disease is critically dependent on integration with the extracel...
peer reviewedThe GTP-binding proteins RhoA, Cdc42 and Rac1 regulate the organization and turnover of...
Sustained forward migration through a fibrillar extracellular matrix requires localization of protru...
SummarysrGAP proteins regulate cell migration and morphogenesis by shaping the structure and dynamic...
Migrating fibroblasts undergo contact inhibition of locomotion (CIL), a process that was discovered ...
Contact inhibition of locomotion (CIL) is the process by which cells in vitro change their direction...
Contact inhibition of locomotion drives a variety of biological phenomenon, from cell dispersion to ...
Contact inhibition of locomotion drives a variety of biological phenomenon, from cell dispersion to ...
AbstractBackground: Substrate anchorage and cell locomotion entail the initiation and development of...
Coordination of membrane deformation and cytoskeletal dynamics lies at the heart of many biological ...
Contact inhibition of locomotion (CIL) is a multifaceted process that causes many cell types to repe...
AbstractContact inhibition of locomotion (CIL) occurs when a cell ceases moving in the same directio...
Contact inhibition of locomotion (CIL) is a process whereby a cell ceases motility or changes its t...
SummaryContact inhibition of locomotion (CIL) is a multifaceted process that causes many cell types ...
The three canonical Rho GTPases RhoA, Rac1 and Cdc42 co-ordinate cytoskeletal dynamics. Recent studi...
Cell migration in wound healing and disease is critically dependent on integration with the extracel...
peer reviewedThe GTP-binding proteins RhoA, Cdc42 and Rac1 regulate the organization and turnover of...
Sustained forward migration through a fibrillar extracellular matrix requires localization of protru...
SummarysrGAP proteins regulate cell migration and morphogenesis by shaping the structure and dynamic...