<div><p>Cells switch between quiescence and proliferation states for maintaining tissue homeostasis and regeneration. At the restriction point (R-point), cells become irreversibly committed to the completion of the cell cycle independent of mitogen. The mechanism involving hyper-phosphorylation of retinoblastoma (Rb) and activation of transcription factor E2F is linked to the R-point passage. However, stress stimuli trigger exit from the cell cycle back to the mitogen-sensitive quiescent state after Rb hyper-phosphorylation but only until APC/C<sup>Cdh1</sup> inactivation. In this study, we developed a mathematical model to investigate the reversible transition between quiescence and proliferation in mammalian cells with respect to mitogen ...
Quiescence is a non-proliferative cellular state that is critical to tissue repair and regeneration....
The coordination of cell proliferation with reversible cell cycle exit into quiescence is crucial fo...
<div><p>Transitions between consecutive phases of the eukaryotic cell cycle are driven by the cataly...
SummaryTissue homeostasis in metazoans is regulated by transitions of cells between quiescence and p...
SummaryTissue homeostasis in metazoans is regulated by transitions of cells between quiescence and p...
Human cells that suffer mild DNA damage can enter a reversible state of growth arrest known as quies...
We recently proposed a detailed model describing the dynamics of the network of cyclin-dependent kin...
We recently proposed a detailed model describing the dynamics of the network of cyclin-dependent kin...
Development, tissue renewal and longevity of multi-cellular organisms require the ability to switch ...
To understand the dynamics of the cell cycle, we need to characterize the balance between cell cycle...
Human cells that suffer mild DNA damage can enter a reversible state of growth arrest known as quies...
Human cells that suffer mild DNA damage can enter a reversible state of growth arrest known as quies...
The transition between proliferating and quiescent states must be carefully regulated to ensure that...
Quiescence is a non-proliferative cellular state that is critical to tissue repair and regeneration....
The reactivation of quiescent cells (e.g. stem cells) into proliferation is a crucial process for ti...
Quiescence is a non-proliferative cellular state that is critical to tissue repair and regeneration....
The coordination of cell proliferation with reversible cell cycle exit into quiescence is crucial fo...
<div><p>Transitions between consecutive phases of the eukaryotic cell cycle are driven by the cataly...
SummaryTissue homeostasis in metazoans is regulated by transitions of cells between quiescence and p...
SummaryTissue homeostasis in metazoans is regulated by transitions of cells between quiescence and p...
Human cells that suffer mild DNA damage can enter a reversible state of growth arrest known as quies...
We recently proposed a detailed model describing the dynamics of the network of cyclin-dependent kin...
We recently proposed a detailed model describing the dynamics of the network of cyclin-dependent kin...
Development, tissue renewal and longevity of multi-cellular organisms require the ability to switch ...
To understand the dynamics of the cell cycle, we need to characterize the balance between cell cycle...
Human cells that suffer mild DNA damage can enter a reversible state of growth arrest known as quies...
Human cells that suffer mild DNA damage can enter a reversible state of growth arrest known as quies...
The transition between proliferating and quiescent states must be carefully regulated to ensure that...
Quiescence is a non-proliferative cellular state that is critical to tissue repair and regeneration....
The reactivation of quiescent cells (e.g. stem cells) into proliferation is a crucial process for ti...
Quiescence is a non-proliferative cellular state that is critical to tissue repair and regeneration....
The coordination of cell proliferation with reversible cell cycle exit into quiescence is crucial fo...
<div><p>Transitions between consecutive phases of the eukaryotic cell cycle are driven by the cataly...