SummaryProper spatial control of the cell division plane is essential to any developing organism. In most cell types, the relative size of the two daughter cells is determined by the position of the mitotic spindle within the geometry of the mother cell. We review the underlying mechanisms responsible for positioning of the mitotic spindle, both in cases where the spindle is placed in the center of the cell and in cases where the spindle is placed away from the center of the cell. We discuss the idea that cortical pulling forces are sufficient to provide a general mechanism for spindle positioning within symmetrically and asymmetrically dividing cells
Mitotic spindle positioning by cortical pulling forces defines the cell division axis and location, ...
International audienceDuring asymmetric division of the Caenorhabditis elegans zygote, to properly d...
The position and orientation of the mitotic spindle is precisely regulated to ensure the accurate pa...
SummaryProper spatial control of the cell division plane is essential to any developing organism. In...
Accurate positioning of spindles is essential for asymmetric mitotic and meiotic cell divisions that...
When a spindle is positioned asymmetrically in a dividing cell, the resulting daughter cells are une...
Spatial coordination of the cell-division axis with cel-lular polarity and/or with the position of n...
SummaryTo divide asymmetrically, the mitotic spindle is moved from the cell center to the cortex, a ...
Proper positioning of the mitotic spindle is fundamental for specifying the site for cleavage furrow...
AbstractThe mechanical environment of a cell has a profound effect on its behaviour, from dictating ...
To divide asymmetrically, the mitotic spindle is moved from the cell center to the cortex, a process...
The direction in which a cell divides is determined by the orientation of its mitotic spindle at met...
In animal cells, positioning of the mitotic spindle is crucial for defining the plane of cytokinesis...
Polarized cortical cues are known to guide spindle movements to dictate division axis and cleavage s...
In any mitotic cell, the orientation of the mitotic spindle determines the orientation of the cleava...
Mitotic spindle positioning by cortical pulling forces defines the cell division axis and location, ...
International audienceDuring asymmetric division of the Caenorhabditis elegans zygote, to properly d...
The position and orientation of the mitotic spindle is precisely regulated to ensure the accurate pa...
SummaryProper spatial control of the cell division plane is essential to any developing organism. In...
Accurate positioning of spindles is essential for asymmetric mitotic and meiotic cell divisions that...
When a spindle is positioned asymmetrically in a dividing cell, the resulting daughter cells are une...
Spatial coordination of the cell-division axis with cel-lular polarity and/or with the position of n...
SummaryTo divide asymmetrically, the mitotic spindle is moved from the cell center to the cortex, a ...
Proper positioning of the mitotic spindle is fundamental for specifying the site for cleavage furrow...
AbstractThe mechanical environment of a cell has a profound effect on its behaviour, from dictating ...
To divide asymmetrically, the mitotic spindle is moved from the cell center to the cortex, a process...
The direction in which a cell divides is determined by the orientation of its mitotic spindle at met...
In animal cells, positioning of the mitotic spindle is crucial for defining the plane of cytokinesis...
Polarized cortical cues are known to guide spindle movements to dictate division axis and cleavage s...
In any mitotic cell, the orientation of the mitotic spindle determines the orientation of the cleava...
Mitotic spindle positioning by cortical pulling forces defines the cell division axis and location, ...
International audienceDuring asymmetric division of the Caenorhabditis elegans zygote, to properly d...
The position and orientation of the mitotic spindle is precisely regulated to ensure the accurate pa...