International audienceArtificial mechanical perturbations affect chromatin in animal cells in culture. Whether this is also relevant to growing tissues in living organisms remains debated. In plants, aerial organ emergence occurs through localized outgrowth at the periphery of the shoot apical meristem, which also contains a stem cell niche. Interestingly, organ outgrowth has been proposed to generate compression in the saddle-shaped organ-meristem boundary domain. Yet whether such growth-induced mechanical stress affects chromatin in plant tissues is unknown. Here, by imaging the nuclear envelope in vivo over time and quantifying nucleus deformation, we demonstrate the presence of active nuclear compression in that domain. We developed a q...
When embryonic stem cells differentiate, the mechanical properties of their nuclei evolve en route t...
Publisher's PDF.Mechanical cues direct the lineage commitment of mesenchymal stem cells (MSCs). In t...
AbstractGenome organization within the cell nucleus is a result of chromatin condensation achieved b...
International audienceArtificial mechanical perturbations affect chromatin in animal cells in cultur...
International audienceArtificial mechanical perturbations affect chromatin in animal cells in cultur...
International audienceArtificial mechanical perturbations affect chromatin in animal cells in cultur...
International audienceArtificial mechanical perturbations affect chromatin in animal cells in cultur...
International audienceArtificial mechanical perturbations affect chromatin in animal cells in cultur...
International audienceArtificial mechanical perturbations affect chromatin in animal cells in cultur...
International audienceArtificial mechanical perturbations affect chromatin in animal cells in cultur...
International audienceArtificial mechanical perturbations affect chromatin in animal cells in cultur...
Artificial mechanical perturbations affect chromatin in animal cells in culture. Whether this is als...
Tissue homeostasis requires maintenance of functional integrity under stress. A central source of st...
Tissue homeostasis requires maintenance of functional integrity under stress. A central source of st...
Cells in our body experience constant mechanical forces that influence biological functions such as ...
When embryonic stem cells differentiate, the mechanical properties of their nuclei evolve en route t...
Publisher's PDF.Mechanical cues direct the lineage commitment of mesenchymal stem cells (MSCs). In t...
AbstractGenome organization within the cell nucleus is a result of chromatin condensation achieved b...
International audienceArtificial mechanical perturbations affect chromatin in animal cells in cultur...
International audienceArtificial mechanical perturbations affect chromatin in animal cells in cultur...
International audienceArtificial mechanical perturbations affect chromatin in animal cells in cultur...
International audienceArtificial mechanical perturbations affect chromatin in animal cells in cultur...
International audienceArtificial mechanical perturbations affect chromatin in animal cells in cultur...
International audienceArtificial mechanical perturbations affect chromatin in animal cells in cultur...
International audienceArtificial mechanical perturbations affect chromatin in animal cells in cultur...
International audienceArtificial mechanical perturbations affect chromatin in animal cells in cultur...
Artificial mechanical perturbations affect chromatin in animal cells in culture. Whether this is als...
Tissue homeostasis requires maintenance of functional integrity under stress. A central source of st...
Tissue homeostasis requires maintenance of functional integrity under stress. A central source of st...
Cells in our body experience constant mechanical forces that influence biological functions such as ...
When embryonic stem cells differentiate, the mechanical properties of their nuclei evolve en route t...
Publisher's PDF.Mechanical cues direct the lineage commitment of mesenchymal stem cells (MSCs). In t...
AbstractGenome organization within the cell nucleus is a result of chromatin condensation achieved b...