4.8 Article

Frequency-Modulated Pulses of ERK Activity Transmit Quantitative Proliferation Signals

Journal

MOLECULAR CELL
Volume 49, Issue 2, Pages 249-261

Publisher

CELL PRESS
DOI: 10.1016/j.molcel.2012.11.002

Keywords

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Funding

  1. National Institutes of Health [5-R01-CA105134-07]
  2. Department of Defense Breast Cancer Research Program [W81XWH-08-1-0609]

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The EGF-stimulated ERK/MAPK pathway is a key conduit for cellular proliferation signals and a therapeutic target in many cancers. Here, we characterize two central quantitative aspects of this pathway: the mechanism by which signal strength is encoded and the response curve relating signal output to proliferation. Under steady-state conditions, we find that ERK is activated in discrete, asynchronous pulses with frequency and duration determined by extracellular concentrations of EGF spanning the physiological range. In genetically identical sister cells, cell-to-cell variability in pulse dynamics influences the decision to enter S phase. While targeted inhibition of EGFR reduces the frequency of ERK activity pulses, inhibition of MEK reduces their amplitude. Continuous response curves measured in multiple cell lines reveal that proliferation is effectively silenced only when ERK pathway output falls below a threshold of similar to 10%, indicating that high-dose targeting of the pathway is necessary to achieve therapeutic efficacy.

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