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PMID: 11832340 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S. Research Support, U.S. Gov't, P.H.S.

Autocrine loops with positive feedback enable context-dependent cell signaling.

American journal of physiology. Cell physiology ·Vol. 282 ·No. 3 ·2002-03-00 ·Pages C545-59

Shvartsman SY, Hagan MP, Yacoub A, Dent P, Wiley HS, Lauffenburger DA

Abstract

We describe a mechanism for context-dependent cell signaling mediated by autocrine loops with positive feedback. We demonstrate that the composition of the extracellular medium can critically influence the intracellular signaling dynamics induced by extracellular stimuli. Specifically, in the epidermal growth factor receptor (EGFR) system, amplitude and duration of mitogen-activated protein kinase (MAPK) activation are modulated by the positive-feedback loop formed by the EGFR, the Ras-MAPK signaling pathway, and a ligand-releasing protease. The signaling response to a transient input is short-lived when most of the released ligand is lost to the cellular microenvironment by diffusion and/or interaction with an extracellular ligand-binding component. In contrast, the response is prolonged or persistent in a cell that is efficient in recapturing the endogenous ligand. To study functional capabilities of autocrine loops, we have developed a mathematical model that accounts for ligand release, transport, binding, and intracellular signaling. We find that context-dependent signaling arises as a result of dynamic interaction between the parts of an autocrine loop. Using the model, we can directly interpret experimental observations on context-dependent responses of autocrine cells to ionizing radiation. In human carcinoma cells, MAPK signaling patterns induced by a short pulse of ionizing radiation can be transient or sustained, depending on cell type and composition of the extracellular medium. On the basis of our model, we propose that autocrine loops in this, and potentially other, growth factor and cytokine systems may serve as modules for context-dependent cell signaling.

MeSH Terms
Autocrine Communication/physiology Biological Transport/physiology Diffusion ErbB Receptors/metabolism Feedback, Physiological/physiology Humans Ligands MAP Kinase Signaling System Mathematics Mitogen-Activated Protein Kinases/metabolism Models, Biological Protein Binding Signal Transduction/physiology Transforming Growth Factor alpha/metabolism Tumor Cells, Cultured
Chemicals
Ligands Transforming Growth Factor alpha ErbB Receptors Mitogen-Activated Protein Kinases
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Shvartsman S Y
Department of Chemical Engineering, Lewis Sigler Institute for Integrative Genomics, Princeton University, Princeton, NJ 08544, USA.
Hagan M P
Yacoub A
Dent P
Wiley H S
Lauffenburger D A
Article Info
Journal
American journal of physiology. Cell physiology
Abbr.
Am J Physiol Cell Physiol
ISSN
0363-6143
Published
2002-03-00
Pages
C545-59
Language
English
Region
United States
NLM ID
100901225
Subset
IM
Grants
NIGMS NIH HHS · F32 GM 20847 · United States
NCI NIH HHS · R01 CA 88906 · United States
NIDDK NIH HHS · R01 DK 52825 · United States
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