SummaryThe cell-cycle oscillator includes an essential negative-feedback loop: Cdc2 activates the anaphase-promoting complex (APC), which leads to cyclin destruction and Cdc2 inactivation. Under some circumstances, a negative-feedback loop is sufficient to generate sustained oscillations. However, the Cdc2/APC system also includes positive-feedback loops, whose functional importance we now assess. We show that short-circuiting positive feedback makes the oscillations in Cdc2 activity faster, less temporally abrupt, and damped. This compromises the activation of cyclin destruction and interferes with mitotic exit and DNA replication. This work demonstrates a systems-level role for positive-feedback loops in the embryonic cell cycle and provi...
AbstractHere we review some of our work over the last decade on Xenopus oocyte maturation, a cell fa...
AbstractThe cell division cycle requires oscillations in activity of B-type cyclin (Clb)-Cdk1 kinase...
<div><p>During the early development of <i>Xenopus laevis</i> embryos, the first mitotic cell cycle ...
SummaryThe cell-cycle oscillator includes an essential negative-feedback loop: Cdc2 activates the an...
In cell cycle control, a negative feedback oscillator design is shown to be reinforced with a positi...
Computational modeling and the theory of nonlinear dynamical systems allow one to not simply describ...
AbstractA positive-feedback loop is a simple motif that is ubiquitous to the modules and networks th...
The transitions between the G(1), S, G(2) and M phases of the mammalian cell cycle are driven by a n...
Cell division is characterized by a sequence of events by which a cell gives rise to two daughter ce...
<p>Cyclin B–Cdk1 inhibits its inhibitory kinases Wee1 and Myt1, forming a double negative feedback l...
AbstractRepetitive cell cycles, which are essential to the perpetuation of life, are orchestrated by...
The early embryonic Xenopus cell cycles are characterized by alternating oscillations of Cyclin-depe...
The early embryonic Xenopus cell cycles are characterized by alternating oscillations of Cyclin-depe...
Some biological networks exhibit oscillations in their components to convert stimuli to time-depende...
Some biological networks exhibit oscillations in their components to convert stimuli to time-depende...
AbstractHere we review some of our work over the last decade on Xenopus oocyte maturation, a cell fa...
AbstractThe cell division cycle requires oscillations in activity of B-type cyclin (Clb)-Cdk1 kinase...
<div><p>During the early development of <i>Xenopus laevis</i> embryos, the first mitotic cell cycle ...
SummaryThe cell-cycle oscillator includes an essential negative-feedback loop: Cdc2 activates the an...
In cell cycle control, a negative feedback oscillator design is shown to be reinforced with a positi...
Computational modeling and the theory of nonlinear dynamical systems allow one to not simply describ...
AbstractA positive-feedback loop is a simple motif that is ubiquitous to the modules and networks th...
The transitions between the G(1), S, G(2) and M phases of the mammalian cell cycle are driven by a n...
Cell division is characterized by a sequence of events by which a cell gives rise to two daughter ce...
<p>Cyclin B–Cdk1 inhibits its inhibitory kinases Wee1 and Myt1, forming a double negative feedback l...
AbstractRepetitive cell cycles, which are essential to the perpetuation of life, are orchestrated by...
The early embryonic Xenopus cell cycles are characterized by alternating oscillations of Cyclin-depe...
The early embryonic Xenopus cell cycles are characterized by alternating oscillations of Cyclin-depe...
Some biological networks exhibit oscillations in their components to convert stimuli to time-depende...
Some biological networks exhibit oscillations in their components to convert stimuli to time-depende...
AbstractHere we review some of our work over the last decade on Xenopus oocyte maturation, a cell fa...
AbstractThe cell division cycle requires oscillations in activity of B-type cyclin (Clb)-Cdk1 kinase...
<div><p>During the early development of <i>Xenopus laevis</i> embryos, the first mitotic cell cycle ...