Bedoukian   RussellIPM   RussellIPM   Piezoelectric Micro-Sprayer


Home
Animal Taxa
Plant Taxa
Semiochemicals
Floral Compounds
Semiochemical Detail
Semiochemicals & Taxa
Synthesis
Control
Invasive spp.
References

Abstract

Guide

Alphascents
Pherobio
InsectScience
E-Econex
Counterpart-Semiochemicals
Print
Email to a Friend
Kindly Donate for The Pherobase

« Previous AbstractKAR5 encodes a novel pheromone-inducible protein required for homotypic nuclear fusion    Next AbstractCatalyst-Free Synthesis of ZnO Nanowires on Oxidized Silicon Substrate for Gas Sensing Applications »

PLoS Comput Biol


Title:Dose-to-duration encoding and signaling beyond saturation in intracellular signaling networks
Author(s):Behar M; Hao N; Dohlman HG; Elston TC;
Address:"Department of Physics, University of North Carolina Chapel Hill, Chapel Hill, North Carolina, United States of America"
Journal Title:PLoS Comput Biol
Year:2008
Volume:20081010
Issue:10
Page Number:e1000197 -
DOI: 10.1371/journal.pcbi.1000197
ISSN/ISBN:1553-7358 (Electronic) 1553-734X (Print) 1553-734X (Linking)
Abstract:"The cellular response elicited by an environmental cue typically varies with the strength of the stimulus. For example, in the yeast Saccharomyces cerevisiae, the concentration of mating pheromone determines whether cells undergo vegetative growth, chemotropic growth, or mating. This implies that the signaling pathways responsible for detecting the stimulus and initiating a response must transmit quantitative information about the intensity of the signal. Our previous experimental results suggest that yeast encode pheromone concentration as the duration of the transmitted signal. Here we use mathematical modeling to analyze possible biochemical mechanisms for performing this 'dose-to-duration' conversion. We demonstrate that modulation of signal duration increases the range of stimulus concentrations for which dose-dependent responses are possible; this increased dynamic range produces the counterintuitive result of 'signaling beyond saturation' in which dose-dependent responses are still possible after apparent saturation of the receptors. We propose a mechanism for dose-to-duration encoding in the yeast pheromone pathway that is consistent with current experimental observations. Most previous investigations of information processing by signaling pathways have focused on amplitude encoding without considering temporal aspects of signal transduction. Here we demonstrate that dose-to-duration encoding provides cells with an alternative mechanism for processing and transmitting quantitative information about their surrounding environment. The ability of signaling pathways to convert stimulus strength into signal duration results directly from the nonlinear nature of these systems and emphasizes the importance of considering the dynamic properties of signaling pathways when characterizing their behavior. Understanding how signaling pathways encode and transmit quantitative information about the external environment will not only deepen our understanding of these systems but also provide insight into how to reestablish proper function of pathways that have become dysregulated by disease"
Keywords:"Computational Biology Dose-Response Relationship, Drug Feedback, Physiological *Models, Biological Pheromones/administration & dosage/physiology Receptors, Cell Surface/drug effects/physiology Receptors, Pheromone/drug effects/physiology Saccharomyces cer;"
Notes:"MedlineBehar, Marcelo Hao, Nan Dohlman, Henrik G Elston, Timothy C eng R01 GM073180/GM/NIGMS NIH HHS/ R01 GM079271/GM/NIGMS NIH HHS/ R01-GM073180/GM/NIGMS NIH HHS/ R01GM079271/GM/NIGMS NIH HHS/ Research Support, N.I.H., Extramural 2008/10/11 PLoS Comput Biol. 2008 Oct; 4(10):e1000197. doi: 10.1371/journal.pcbi.1000197. Epub 2008 Oct 10"

 
Back to top
 
Citation: El-Sayed AM 2024. The Pherobase: Database of Pheromones and Semiochemicals. <http://www.pherobase.com>.
© 2003-2024 The Pherobase - Extensive Database of Pheromones and Semiochemicals. Ashraf M. El-Sayed.
Page created on 17-11-2024