Cell-extracellular matrix sensing plays a crucial role in cellular behavior and leads to the formation of a macromolecular protein complex called the focal adhesion. Despite their importance in cellular decision making, relatively little is known about cell-matrix interactions and the intracellular transduction of an initial ligand-receptor binding event on the single-molecule level. Here, we combine cRGD-ligand-decorated DNA tension sensors with DNA-PAINT super-resolution microscopy to study the mechanical engagement of single integrin receptors and the downstream influence on actin bundling. We uncover that integrin receptor clustering is governed by a non-random organization with complexes spaced at 20-30nm distances. The DNA-based tensi...
ABSTRACT: Herein we aimed to understand how nanoscale clustering of RGD ligands alters the mechano-r...
Cell interactions with adhesive surfaces play a vital role in the regulation of cell proliferation, ...
AbstractCatch bonds are cellular receptor-ligand pairs whose lifetime, counterintuitively, increases...
Cells can sense the density and distribution of extracellular matrix (ECM) molecules by means of ind...
AbstractThe interplay between chemical and mechanical signals plays an important role in cell biolog...
AbstractForces transmitted by integrins regulate many important cellular functions. Previously, we d...
Living cells are exquisitely responsive to mechanical cues, yet how cells produce and detect mechani...
International audiencePodosomes are ubiquitous cellular structures important to diverse processes in...
Integrins mediate cell adhesion to the extracellular matrix and enable the construction of complex, ...
Cell surface receptors are central to the cell's ability to generate coordinated responses to the mu...
Mechanical forces are an integral part in biology, they regulate several cellular properties, such a...
Nanostructured and chemically functionalized materials which mimic architectural and mechanical feat...
Spatial patterning of biochemical cues on the micro- and nanometer scale controls numerous cellular ...
Herein we aimed to understand how nanoscale clustering of RGD ligands alters the mechano-regulation ...
Integrins have emerged as key sensory molecules that translate chemical and physical cues from the e...
ABSTRACT: Herein we aimed to understand how nanoscale clustering of RGD ligands alters the mechano-r...
Cell interactions with adhesive surfaces play a vital role in the regulation of cell proliferation, ...
AbstractCatch bonds are cellular receptor-ligand pairs whose lifetime, counterintuitively, increases...
Cells can sense the density and distribution of extracellular matrix (ECM) molecules by means of ind...
AbstractThe interplay between chemical and mechanical signals plays an important role in cell biolog...
AbstractForces transmitted by integrins regulate many important cellular functions. Previously, we d...
Living cells are exquisitely responsive to mechanical cues, yet how cells produce and detect mechani...
International audiencePodosomes are ubiquitous cellular structures important to diverse processes in...
Integrins mediate cell adhesion to the extracellular matrix and enable the construction of complex, ...
Cell surface receptors are central to the cell's ability to generate coordinated responses to the mu...
Mechanical forces are an integral part in biology, they regulate several cellular properties, such a...
Nanostructured and chemically functionalized materials which mimic architectural and mechanical feat...
Spatial patterning of biochemical cues on the micro- and nanometer scale controls numerous cellular ...
Herein we aimed to understand how nanoscale clustering of RGD ligands alters the mechano-regulation ...
Integrins have emerged as key sensory molecules that translate chemical and physical cues from the e...
ABSTRACT: Herein we aimed to understand how nanoscale clustering of RGD ligands alters the mechano-r...
Cell interactions with adhesive surfaces play a vital role in the regulation of cell proliferation, ...
AbstractCatch bonds are cellular receptor-ligand pairs whose lifetime, counterintuitively, increases...