The correct temporal regulation of mitosis underpins genomic stability because it ensures the alignment of chromosomes on the mitotic spindle that is required for their proper segregation to the two daughter cells. Crucially, sister chromatid separation must be delayed until all the chromosomes have attached to the spindle; this is achieved by the Spindle Assembly Checkpoint (SAC) that inhibits the Anaphase Promoting Complex/Cyclosome (APC/C) ubiquitin ligase. In many species the first embryonic M-phase is significantly prolonged compared to the subsequent divisions, but the reason behind this has remained unclear. Here, we show that the first M-phase in the mouse embryo is significantly extended due to a delay in APC/C activation. Unlike i...
There is remarkable redundancy between the Cyclin-Cdk complexes that comprise the cell cycle machine...
AbstractThe anaphase-promoting complex (APC) or cyclosome directs the ubiquitination and destruction...
In: Jacek Z. KUBIAK, (ed.), 2012, Mouse development: From oocyte to stem cells, Springer Verlag, 69-...
The correct temporal regulation of mitosis underpins genomic stability because it ensures the alignm...
The correct temporal regulation of mitosis underpins genomic stability because it ensures the alignm...
Published 18 Mar 2014The spindle assembly checkpoint (SAC) prevents aneuploidy by coupling anaphase ...
The timing mechanism for mitotic progression is still poorly understood. The spindle assembly checkp...
Temporal regulation of M-phases of the cell cycle requires precise molecular mechanisms that differ ...
SummaryThe timing mechanism for mitotic progression is still poorly understood. The spindle assembly...
The first mitosis of the mouse embryo is almost twice as long as the second. The mechanism of the pr...
The anaphase-promoting complex/cyclosome (APC/C) orchestrates cell cycle progression by controlling ...
International audienceThe anaphase-promoting complex or cyclosome (APC/C) is an ubiquitin protein li...
For successful mitosis, Cyclin 131 and Securin must be degraded efficiently before anaphase. Destruc...
Homologous chromosome segregation errors during meiosis I are common and generate aneuploid embryos....
Oocyte maturation and early embryo development require precise coordination between cell cycle progr...
There is remarkable redundancy between the Cyclin-Cdk complexes that comprise the cell cycle machine...
AbstractThe anaphase-promoting complex (APC) or cyclosome directs the ubiquitination and destruction...
In: Jacek Z. KUBIAK, (ed.), 2012, Mouse development: From oocyte to stem cells, Springer Verlag, 69-...
The correct temporal regulation of mitosis underpins genomic stability because it ensures the alignm...
The correct temporal regulation of mitosis underpins genomic stability because it ensures the alignm...
Published 18 Mar 2014The spindle assembly checkpoint (SAC) prevents aneuploidy by coupling anaphase ...
The timing mechanism for mitotic progression is still poorly understood. The spindle assembly checkp...
Temporal regulation of M-phases of the cell cycle requires precise molecular mechanisms that differ ...
SummaryThe timing mechanism for mitotic progression is still poorly understood. The spindle assembly...
The first mitosis of the mouse embryo is almost twice as long as the second. The mechanism of the pr...
The anaphase-promoting complex/cyclosome (APC/C) orchestrates cell cycle progression by controlling ...
International audienceThe anaphase-promoting complex or cyclosome (APC/C) is an ubiquitin protein li...
For successful mitosis, Cyclin 131 and Securin must be degraded efficiently before anaphase. Destruc...
Homologous chromosome segregation errors during meiosis I are common and generate aneuploid embryos....
Oocyte maturation and early embryo development require precise coordination between cell cycle progr...
There is remarkable redundancy between the Cyclin-Cdk complexes that comprise the cell cycle machine...
AbstractThe anaphase-promoting complex (APC) or cyclosome directs the ubiquitination and destruction...
In: Jacek Z. KUBIAK, (ed.), 2012, Mouse development: From oocyte to stem cells, Springer Verlag, 69-...