International audienceContractile tissues demonstrate a pronounced capacity to remodel their composition in response to mechanical challenges. Descriptive evidence suggests the upstream involvement of the phosphotransfer enzyme FAK (focal adhesion kinase) in the molecular control of load-dependent muscle plasticity. Thereby FAK evolves as a myocellular transducer of mechanical signals towards downstream transcript expression in myofibres. Recent advances in somatic gene therapy now allow the exploration of the functional involvement of this enzyme in mechanotransduction in intact muscle
<div><p>Mechanosensing at focal adhesions regulates vital cellular processes. Here, we present resul...
AbstractA central question in muscle biology is how costameres are formed and become aligned with un...
Introduction: Integrins are membrane-spanning heterodimers that connect the extracellular matrix (EC...
International audienceContractile tissues demonstrate a pronounced capacity to remodel their composi...
Contractile tissues demonstrate a pronounced capacity to remodel their composition in response to me...
We examined the involvement of focal adhesion kinase (FAK) in mechano-regulated signalling to protei...
Skeletal muscle has a remarkable ability to respond to different physical stresses. Loading muscle t...
Striated muscle exhibits a pronounced structural-functional plasticity in response to chronic altera...
Skeletal myogenesis is characterized by the fusion of mononucleated myoblasts into multinucleated my...
9 p.-7 fig.-1 tab.Focal adhesion kinase (FAK) is a key signaling molecule regulating cell adhesion, ...
The majority of cells are equipped to detect and decipher physical stimuli, and then react to these ...
Mechanical signaling plays a crucial role in cell communication. Translating mechanical force into b...
AIMS We assessed focal adhesion kinase (FAK) response to concentric (CON) versus eccentric (ECC) re...
A healthy skeleton relies on bone’s ability to respond to external mechanical forces. The molecular ...
AbstractTissue mechanics provide an important context for tissue growth, maintenance and function. O...
<div><p>Mechanosensing at focal adhesions regulates vital cellular processes. Here, we present resul...
AbstractA central question in muscle biology is how costameres are formed and become aligned with un...
Introduction: Integrins are membrane-spanning heterodimers that connect the extracellular matrix (EC...
International audienceContractile tissues demonstrate a pronounced capacity to remodel their composi...
Contractile tissues demonstrate a pronounced capacity to remodel their composition in response to me...
We examined the involvement of focal adhesion kinase (FAK) in mechano-regulated signalling to protei...
Skeletal muscle has a remarkable ability to respond to different physical stresses. Loading muscle t...
Striated muscle exhibits a pronounced structural-functional plasticity in response to chronic altera...
Skeletal myogenesis is characterized by the fusion of mononucleated myoblasts into multinucleated my...
9 p.-7 fig.-1 tab.Focal adhesion kinase (FAK) is a key signaling molecule regulating cell adhesion, ...
The majority of cells are equipped to detect and decipher physical stimuli, and then react to these ...
Mechanical signaling plays a crucial role in cell communication. Translating mechanical force into b...
AIMS We assessed focal adhesion kinase (FAK) response to concentric (CON) versus eccentric (ECC) re...
A healthy skeleton relies on bone’s ability to respond to external mechanical forces. The molecular ...
AbstractTissue mechanics provide an important context for tissue growth, maintenance and function. O...
<div><p>Mechanosensing at focal adhesions regulates vital cellular processes. Here, we present resul...
AbstractA central question in muscle biology is how costameres are formed and become aligned with un...
Introduction: Integrins are membrane-spanning heterodimers that connect the extracellular matrix (EC...