Asymmetric cell divisions are essential for the development of multicellular organisms. To proceed, they require an initially symmetric cell to polarize. In Caenorhabditis elegans zygotes, anteroposterior polarization is facilitated by a large-scale flow of the actomyosin cortex, which directs the asymmetry of the first mitotic division. Cortical flows appear in many contexts of development, but their underlying forces and physical principles remain poorly understood. How actomyosin contractility and cortical tension interact to generate large-scale flow is unclear. Here we report on the subcellular distribution of cortical tension in the polarizing C. elegans zygote, which we determined using position- and direction-sensitive laser ablatio...
Asymmetric positioning of the mitotic spindle in C. elegans embryos is mediated by force-generating ...
International audienceAsymmetric positioning of the mitotic spindle in C. elegans embryos is mediate...
AbstractThe C. elegans PAR proteins PAR-3, PAR-6, and PKC-3 are asymmetrically localized and have es...
Asymmetric cell divisions are essential for the development of multicellular organisms. To proceed, ...
Asymmetric cell divisions are essential for the development of multicellular organisms. To proceed, ...
Asymmetric cell divisions are essential for the development of multicellular organisms. To proceed, ...
During animal development, it is crucial that cells can sense and adapt to mechanical forces from th...
Asymmetric cell divisions are essential for the development of multicellular organisms. To proceed, ...
AbstractMany cell types rely on asymmetrically localized PAR proteins to become polarized. New evide...
International audienceDuring asymmetric cell division, the molecular motor dynein generates cortical...
International audienceDuring asymmetric cell division, the molecular motor dynein generates cortical...
International audienceDuring asymmetric cell division, the molecular motor dynein generates cortical...
The one-cell Caenorhabditis elegans embryo divides asymmetrically into a larger and smaller blastome...
Asymmetric positioning of the mitotic spindle in C. elegans embryos is mediated by force-generating ...
Asymmetric positioning of the mitotic spindle in C. elegans embryos is mediated by force-generating ...
Asymmetric positioning of the mitotic spindle in C. elegans embryos is mediated by force-generating ...
International audienceAsymmetric positioning of the mitotic spindle in C. elegans embryos is mediate...
AbstractThe C. elegans PAR proteins PAR-3, PAR-6, and PKC-3 are asymmetrically localized and have es...
Asymmetric cell divisions are essential for the development of multicellular organisms. To proceed, ...
Asymmetric cell divisions are essential for the development of multicellular organisms. To proceed, ...
Asymmetric cell divisions are essential for the development of multicellular organisms. To proceed, ...
During animal development, it is crucial that cells can sense and adapt to mechanical forces from th...
Asymmetric cell divisions are essential for the development of multicellular organisms. To proceed, ...
AbstractMany cell types rely on asymmetrically localized PAR proteins to become polarized. New evide...
International audienceDuring asymmetric cell division, the molecular motor dynein generates cortical...
International audienceDuring asymmetric cell division, the molecular motor dynein generates cortical...
International audienceDuring asymmetric cell division, the molecular motor dynein generates cortical...
The one-cell Caenorhabditis elegans embryo divides asymmetrically into a larger and smaller blastome...
Asymmetric positioning of the mitotic spindle in C. elegans embryos is mediated by force-generating ...
Asymmetric positioning of the mitotic spindle in C. elegans embryos is mediated by force-generating ...
Asymmetric positioning of the mitotic spindle in C. elegans embryos is mediated by force-generating ...
International audienceAsymmetric positioning of the mitotic spindle in C. elegans embryos is mediate...
AbstractThe C. elegans PAR proteins PAR-3, PAR-6, and PKC-3 are asymmetrically localized and have es...