We analyse a role of cooperative interaction between neighbouring adhesion-mechanosensor complexes by constructing an Ising-like Hamiltonian describing the free energy of cell adhesion on a substrate as a lattice of 3-state mechanosensing sites involving focal adhesion kinase (FAK). We use Monte Carlo stochastic algorithm to find equilibrium configurations of these mechanosensors in two representative geometries: on a 1D ring representing the rim of a cell on at surface, and a 2D bounded surface representing the whole area of cell contact with flat surface. The level of FAK activation depend on the pulling force applied to the individual FAK-integrin via actin-myosin contractile networks, and the details of the coupling between individua...
Focal adhesions anchor contractile actin fibers with the extracellular matrix, sense the generated t...
By forming attachments and contracting, cells are able to exert forces on their surroundings and inf...
Cellular migration is a tightly regulated process that involves actin cytoskeleton, adaptor proteins...
Cells adhere to surfaces or cells via multi-protein complexes that are based on transmembrane cellul...
<div><p>Mechanosensing at focal adhesions regulates vital cellular processes. Here, we present resul...
9 p.-7 fig.-1 tab.Focal adhesion kinase (FAK) is a key signaling molecule regulating cell adhesion, ...
Strong mechanical forces can, obviously, disrupt cell-cell and cell-matrix adhesions, e.g., cyclic u...
Unlike slip bonds, catch bonds experience reinforcement under tension. Cell adheres to the surface, ...
Mechanical signaling plays a crucial role in cell communication. Translating mechanical force into b...
Unlike slip bonds, catch bonds experience reinforcement under tension. Cell adheres to the surface, ...
Focal adhesions anchor contractile actin fibers with the extracellular matrix, sense the generated t...
AbstractCell–tissue–tissue interaction is determined by specific short range forces between cell adh...
Transduction of extracellular matrix mechanics affects cell migration, proliferation, and differenti...
Transduction of extracellular matrix mechanics affects cell migration, proliferation, and differenti...
Focal adhesions anchor contractile actin fibers with the extracellular matrix, sense the generated t...
Focal adhesions anchor contractile actin fibers with the extracellular matrix, sense the generated t...
By forming attachments and contracting, cells are able to exert forces on their surroundings and inf...
Cellular migration is a tightly regulated process that involves actin cytoskeleton, adaptor proteins...
Cells adhere to surfaces or cells via multi-protein complexes that are based on transmembrane cellul...
<div><p>Mechanosensing at focal adhesions regulates vital cellular processes. Here, we present resul...
9 p.-7 fig.-1 tab.Focal adhesion kinase (FAK) is a key signaling molecule regulating cell adhesion, ...
Strong mechanical forces can, obviously, disrupt cell-cell and cell-matrix adhesions, e.g., cyclic u...
Unlike slip bonds, catch bonds experience reinforcement under tension. Cell adheres to the surface, ...
Mechanical signaling plays a crucial role in cell communication. Translating mechanical force into b...
Unlike slip bonds, catch bonds experience reinforcement under tension. Cell adheres to the surface, ...
Focal adhesions anchor contractile actin fibers with the extracellular matrix, sense the generated t...
AbstractCell–tissue–tissue interaction is determined by specific short range forces between cell adh...
Transduction of extracellular matrix mechanics affects cell migration, proliferation, and differenti...
Transduction of extracellular matrix mechanics affects cell migration, proliferation, and differenti...
Focal adhesions anchor contractile actin fibers with the extracellular matrix, sense the generated t...
Focal adhesions anchor contractile actin fibers with the extracellular matrix, sense the generated t...
By forming attachments and contracting, cells are able to exert forces on their surroundings and inf...
Cellular migration is a tightly regulated process that involves actin cytoskeleton, adaptor proteins...