Sister chromatid cohesion, mediated by the cohesin complex, is essential for faithful mitosis. Nevertheless, evidence suggests that the surveillance mechanism that governs mitotic fidelity, the spindle assembly checkpoint (SAC), is not robust enough to halt cell division when cohesion loss occurs prematurely. The mechanism behind this poor response is not properly understood. Using developing Drosophila brains, we show that full sister chromatid separation elicits a weak checkpoint response resulting in abnormal mitotic exit after a short delay. Quantitative live-cell imaging approaches combined with mathematical modeling indicate that weak SAC activation upon cohesion loss is caused by weak signal generation. This is further attenuated by ...
Because cohesion prevents sister-chromatid separation and spindle elongation, cohesion dissolution m...
The spindle assembly checkpoint ensures that mitotic cells only segregate their sister chromatids on...
AbstractBackground: The coordination of cell cycle events is necessary to ensure the proper duplicat...
Sister chromatid cohesion, mediated by the cohesin complex, is essential for faithful mitosis. Never...
SummarySister chromatid cohesion, mediated by the cohesin complex, is essential for faithful mitosis...
Sister chromatid cohesion, mediated by the cohesin complex, is essential for faithful mitosis. Never...
The fidelity of mitosis depends on cohesive forces that keep sister chromatids together. This is med...
SummaryIn the presence of unattached/weakly attached kinetochores, the spindle assembly checkpoint (...
SummaryBackgroundChromosome instability is thought to be a major contributor to cancer malignancy an...
The spindle assembly checkpoint (SAC) is a feedback control system that monitors the state of kineto...
Two closely connected mechanisms safeguard the fidelity of chromosome segregation in eukaryotic cell...
AbstractTo segregate chromosomes during cell division, microtubules that form the bipolar spindle at...
The mitotic checkpoint regulates a critical transition in the eukaryotic cell cycle. It delays exit ...
Chromosome segregation requires coordinated separation of sister chromatids following biorientation ...
During mitosis and meiosis, the spindle assembly checkpoint acts to maintain genome stability by del...
Because cohesion prevents sister-chromatid separation and spindle elongation, cohesion dissolution m...
The spindle assembly checkpoint ensures that mitotic cells only segregate their sister chromatids on...
AbstractBackground: The coordination of cell cycle events is necessary to ensure the proper duplicat...
Sister chromatid cohesion, mediated by the cohesin complex, is essential for faithful mitosis. Never...
SummarySister chromatid cohesion, mediated by the cohesin complex, is essential for faithful mitosis...
Sister chromatid cohesion, mediated by the cohesin complex, is essential for faithful mitosis. Never...
The fidelity of mitosis depends on cohesive forces that keep sister chromatids together. This is med...
SummaryIn the presence of unattached/weakly attached kinetochores, the spindle assembly checkpoint (...
SummaryBackgroundChromosome instability is thought to be a major contributor to cancer malignancy an...
The spindle assembly checkpoint (SAC) is a feedback control system that monitors the state of kineto...
Two closely connected mechanisms safeguard the fidelity of chromosome segregation in eukaryotic cell...
AbstractTo segregate chromosomes during cell division, microtubules that form the bipolar spindle at...
The mitotic checkpoint regulates a critical transition in the eukaryotic cell cycle. It delays exit ...
Chromosome segregation requires coordinated separation of sister chromatids following biorientation ...
During mitosis and meiosis, the spindle assembly checkpoint acts to maintain genome stability by del...
Because cohesion prevents sister-chromatid separation and spindle elongation, cohesion dissolution m...
The spindle assembly checkpoint ensures that mitotic cells only segregate their sister chromatids on...
AbstractBackground: The coordination of cell cycle events is necessary to ensure the proper duplicat...