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Theoretical and experimental evidence for hysteresis in cell proliferation.

  • Shaochun Bai
  • David Goodrich
  • C Dennis Thron
  • Edwin Tecarro
  • Mandri Obeyesekere
Cell Cycle 2003; 2 (1): 46-1728
Abstract
We propose a mathematical model for the regulation of the G1-phase of the mammalian cell cycle taking into account interactions of cyclin D/cdk4, cyclin E/cdk2, Rb and E2F. Mathematical analysis of this model predicts that a change in the proliferative status in response to a change in concentrations of serum growth factors will exhibit the property of hysteresis: the concentration of growth factors required to induce proliferation is higher than the concentration required to maintain proliferation. We experimentally confirmed this prediction in mouse embryonic fibroblasts in vitro. In agreement with the mathematical model, this indicates that changes in proliferative mode caused by small changes in concentrations of growth factors are not easily reversible. Based on this study, we discuss the importance of proliferation hysteresis for cell cycle regulation.
Id Name JWS model
model0_bai1 bai1 bai1
Id Name Source Number of Data Sources
Id Name Model Simulation Simulation Simulation
task0_model0_bai1 task0_model0_bai1 bai1 190.0 410.0 1000

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Figure_2B_RS_and_Rb Figure 2B RS and Rb 0
Figure_2B_X Figure 2B X 0

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