SummaryDuring cell division, the molecular motor Eg5 crosslinks overlapping antiparallel microtubules and pushes them apart to separate mitotic spindle poles. Dynein has been proposed as a direct antagonist of Eg5 at the spindle equator, pulling on antiparallel microtubules and favoring spindle collapse. Some of the experiments supporting this hypothesis relied on endpoint quantifications of spindle phenotypes rather than following individual cell fates over time. Here, we present a mathematical model and proof-of-principle experiments to demonstrate that endpoint quantifications can be fundamentally misleading because they overestimate defective phenotypes. Indeed, live-cell imaging reveals that, while depletion of dynein or the dynein bin...
SummaryAccurate chromosome segregation during mitosis relies on the organization of microtubules int...
SummarySpindle bipolarity relies on a fine balance of forces exerted by various molecular motors [1–...
Each time a cell divides, the microtubule cytoskeleton self-organizes into the metaphase spindle: an...
During cell division, the molecular motor Eg5 crosslinks overlapping antiparallel microtubules and p...
During cell division, the molecular motor Eg5 crosslinks overlapping antiparallel microtubules and p...
During cell division, the molecular motor Eg5 crosslinks overlapping antiparallel microtubules and p...
Mitotic spindle assembly requires the combined activity of various molecular motor proteins, includi...
SummaryMitotic spindle assembly requires the combined activity of various molecular motor proteins, ...
The development and maintenance of multicellular organisms depends fundamentally on cell division, a...
textabstractBipolar spindle assembly critically depends on the microtubule plus-end-directed motor E...
Bipolar spindle assembly critically depends on the microtubule plus-end-directed motor Eg5 that bind...
At each cell division, the spindle self-organizes from microtubules and motors. In human spindles, t...
Bipolar spindle assembly requires force to organize the microtubule network. Here, we show that thre...
The development and maintenance of multicellular organisms depends fundamentally on cell division, a...
SummaryBipolar spindle assembly requires force to organize the microtubule network. Here, we show th...
SummaryAccurate chromosome segregation during mitosis relies on the organization of microtubules int...
SummarySpindle bipolarity relies on a fine balance of forces exerted by various molecular motors [1–...
Each time a cell divides, the microtubule cytoskeleton self-organizes into the metaphase spindle: an...
During cell division, the molecular motor Eg5 crosslinks overlapping antiparallel microtubules and p...
During cell division, the molecular motor Eg5 crosslinks overlapping antiparallel microtubules and p...
During cell division, the molecular motor Eg5 crosslinks overlapping antiparallel microtubules and p...
Mitotic spindle assembly requires the combined activity of various molecular motor proteins, includi...
SummaryMitotic spindle assembly requires the combined activity of various molecular motor proteins, ...
The development and maintenance of multicellular organisms depends fundamentally on cell division, a...
textabstractBipolar spindle assembly critically depends on the microtubule plus-end-directed motor E...
Bipolar spindle assembly critically depends on the microtubule plus-end-directed motor Eg5 that bind...
At each cell division, the spindle self-organizes from microtubules and motors. In human spindles, t...
Bipolar spindle assembly requires force to organize the microtubule network. Here, we show that thre...
The development and maintenance of multicellular organisms depends fundamentally on cell division, a...
SummaryBipolar spindle assembly requires force to organize the microtubule network. Here, we show th...
SummaryAccurate chromosome segregation during mitosis relies on the organization of microtubules int...
SummarySpindle bipolarity relies on a fine balance of forces exerted by various molecular motors [1–...
Each time a cell divides, the microtubule cytoskeleton self-organizes into the metaphase spindle: an...