SummaryTissue microenvironments are characterized not only in terms of chemical composition but also by collective properties such as stiffness, which influences the contractility of a cell, its adherent morphology, and even differentiation [1–8]. The nucleoskeletal protein lamin-A,C increases with matrix stiffness, confers nuclear mechanical properties, and influences differentiation of mesenchymal stem cells (MSCs), whereas B-type lamins remain relatively constant [9]. Here we show in single-cell analyses that matrix stiffness couples to myosin-II activity to promote lamin-A,C dephosphorylation at Ser22, which regulates turnover, lamina physical properties, and actomyosin expression. Lamin-A,C phosphorylation is low in interphase versus d...
Mesenchymal stem cells (MSCs) maintain the musculoskeletal system by differentiating into multiple l...
LINC complexes are crucial for the response of muscle cell precursors to the rigidity of their envir...
LINC complexes are crucial for the response of muscle cell precursors to the rigidity of their envir...
SummaryTissue microenvironments are characterized not only in terms of chemical composition but also...
‘Nuclear mechanosensing’ encompasses a wide range of biophysical pathways that are emerging as key p...
The ability of a cell to regulate its mechanical properties is central to its function. Emerging evi...
The levels of nuclear protein Lamin A/C are crucial for nuclear mechanotransduction. Lamin A/C level...
AbstractLamin A/C is a major constituent of the nuclear lamina, a thin filamentous protein layer tha...
‘Nuclear mechanosensing’ encompasses a wide range of biophysical pathways that are emerging as key p...
Mechanotransduction translates forces into biological responses and regulates cell functionalities. ...
Laminopathies comprise a group of inherited diseases with variable clinical phenotypes, caused by mu...
The levels of nuclear protein Lamin A/C are crucial for nuclear mechanotransduction. Lamin A/C level...
Cells continuously sense and respond to their physical surroundings through their cytoskeleton. The ...
Lamin-A provides stiff resistance to cell migration Harada et al. describe how nuclear lamins affect...
Mesenchymal stem cells (MSCs) maintain the musculoskeletal system by differentiating into multiple l...
Mesenchymal stem cells (MSCs) maintain the musculoskeletal system by differentiating into multiple l...
LINC complexes are crucial for the response of muscle cell precursors to the rigidity of their envir...
LINC complexes are crucial for the response of muscle cell precursors to the rigidity of their envir...
SummaryTissue microenvironments are characterized not only in terms of chemical composition but also...
‘Nuclear mechanosensing’ encompasses a wide range of biophysical pathways that are emerging as key p...
The ability of a cell to regulate its mechanical properties is central to its function. Emerging evi...
The levels of nuclear protein Lamin A/C are crucial for nuclear mechanotransduction. Lamin A/C level...
AbstractLamin A/C is a major constituent of the nuclear lamina, a thin filamentous protein layer tha...
‘Nuclear mechanosensing’ encompasses a wide range of biophysical pathways that are emerging as key p...
Mechanotransduction translates forces into biological responses and regulates cell functionalities. ...
Laminopathies comprise a group of inherited diseases with variable clinical phenotypes, caused by mu...
The levels of nuclear protein Lamin A/C are crucial for nuclear mechanotransduction. Lamin A/C level...
Cells continuously sense and respond to their physical surroundings through their cytoskeleton. The ...
Lamin-A provides stiff resistance to cell migration Harada et al. describe how nuclear lamins affect...
Mesenchymal stem cells (MSCs) maintain the musculoskeletal system by differentiating into multiple l...
Mesenchymal stem cells (MSCs) maintain the musculoskeletal system by differentiating into multiple l...
LINC complexes are crucial for the response of muscle cell precursors to the rigidity of their envir...
LINC complexes are crucial for the response of muscle cell precursors to the rigidity of their envir...