English

Noisy-threshold control of cell death

Cell Behavior 2010-12-03 v1 Biological Physics

Abstract

Cellular responses to death-promoting stimuli typically proceed through a differentiated multistage process, involving a lag phase, extensive death, and potential adaptation. Deregulation of this chain of events is at the root of many diseases. Improper adaptation is particularly important because it allows cell sub-populations to survive even in the continuous presence of death conditions, which results, among others, in the eventual failure of many targeted anticancer therapies. Here, I show that these typical responses arise naturally from the interplay of intracellular variability with a threshold-based control mechanism that detects cellular changes in addition to just the cellular state itself. Implementation of this mechanism in a quantitative model for T-cell apoptosis, a prototypical example of programmed cell death, captures with exceptional accuracy experimental observations for different expression levels of the oncogene Bcl-xL and directly links adaptation with noise in an ATP threshold below which cells die. These results indicate that oncogenes like Bcl-xL, besides regulating absolute death values, can have a novel role as active controllers of cell-cell variability and the extent of adaptation.

Keywords

Cite

@article{arxiv.1011.6048,
  title  = {Noisy-threshold control of cell death},
  author = {Jose M. G. Vilar},
  journal= {arXiv preprint arXiv:1011.6048},
  year   = {2010}
}

Comments

Supplementary information available at http://www.biomedcentral.com/1752-0509/4/152

R2 v1 2026-06-21T16:49:56.076Z