The operating principles of complex regulatory networks are best understood with the help of mathematical modelling rather than by intuitive reasoning. Hereby, we study the dynamics of the mitotic exit (ME) control system in budding yeast by further developing the Queralt's model. A comprehensive systems view of the network regulating ME is provided based on classical experiments in the literature. In this picture, Cdc20-APC is a critical node controlling both cyclin (Clb2 and Clb5) and phosphatase (Cdc14) branches of the regulatory network. On the basis of experimental situations ranging from single to quintuple mutants, the kinetic parameters of the network are estimated. Numerical analysis of the model quantifies the dependence of ME con...
The exit from mitosis is the last critical decision a cell has to make during a division cycle. A co...
International audienceIn present-day eukaryotes, the cell division cycle is controlled by a complex ...
International audienceIn present-day eukaryotes, the cell division cycle is controlled by a complex ...
The operating principles of complex regulatory networks are more easily understood with mathematical...
Cell cycle progression in eukaryotes is regulated by periodic activation and inactivation of a famil...
Metaphase of mitosis is brought about in all eukaryotes by activation of cylin-dependent kinase (Cdk...
<div><p>Cell cycle progression in eukaryotes is regulated by periodic activation and inactivation of...
The transition from mitosis into the first gap phase of the cell cycle in budding yeast is controlle...
In budding yeast, the phosphatase Cdc14 is released from nucleolus to promote mitotic exit (ME). Cdc...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Biology, 2004.Includes bibliographi...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Biology, 2003.Includes bibliographi...
The mitotic cell cycle is fundamental to eukaryotic life. In mitosis, replicated chromosomes are seg...
<div><p>In present-day eukaryotes, the cell division cycle is controlled by a complex network of int...
In present-day eukaryotes, the cell division cycle is controlled by a complex network of interacting...
International audienceIn present-day eukaryotes, the cell division cycle is controlled by a complex ...
The exit from mitosis is the last critical decision a cell has to make during a division cycle. A co...
International audienceIn present-day eukaryotes, the cell division cycle is controlled by a complex ...
International audienceIn present-day eukaryotes, the cell division cycle is controlled by a complex ...
The operating principles of complex regulatory networks are more easily understood with mathematical...
Cell cycle progression in eukaryotes is regulated by periodic activation and inactivation of a famil...
Metaphase of mitosis is brought about in all eukaryotes by activation of cylin-dependent kinase (Cdk...
<div><p>Cell cycle progression in eukaryotes is regulated by periodic activation and inactivation of...
The transition from mitosis into the first gap phase of the cell cycle in budding yeast is controlle...
In budding yeast, the phosphatase Cdc14 is released from nucleolus to promote mitotic exit (ME). Cdc...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Biology, 2004.Includes bibliographi...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Biology, 2003.Includes bibliographi...
The mitotic cell cycle is fundamental to eukaryotic life. In mitosis, replicated chromosomes are seg...
<div><p>In present-day eukaryotes, the cell division cycle is controlled by a complex network of int...
In present-day eukaryotes, the cell division cycle is controlled by a complex network of interacting...
International audienceIn present-day eukaryotes, the cell division cycle is controlled by a complex ...
The exit from mitosis is the last critical decision a cell has to make during a division cycle. A co...
International audienceIn present-day eukaryotes, the cell division cycle is controlled by a complex ...
International audienceIn present-day eukaryotes, the cell division cycle is controlled by a complex ...