Temporal perturbation of ERK dynamics reveals network architecture of FGF2/MAPK signaling.
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BORIS DOI
Publisher DOI
PubMed ID
31777174
Description
Stimulation of PC-12 cells with epidermal (EGF) versus nerve (NGF) growth factors (GFs) biases the distribution between transient and sustained single-cell ERK activity states, and between proliferation and differentiation fates within a cell population. We report that fibroblast GF (FGF2) evokes a distinct behavior that consists of a gradually changing population distribution of transient/sustained ERK signaling states in response to increasing inputs in a dose response. Temporally controlled GF perturbations of MAPK signaling dynamics applied using microfluidics reveal that this wider mix of ERK states emerges through the combination of an intracellular feedback, and competition of FGF2 binding to FGF receptors (FGFRs) and heparan sulfate proteoglycan (HSPG) co-receptors. We show that the latter experimental modality is instructive for model selection using a Bayesian parameter inference. Our results provide novel insights into how different receptor tyrosine kinase (RTK) systems differentially wire the MAPK network to fine-tune fate decisions at the cell population level.
Date of Publication
2019-11
Publication Type
Article
Subject(s)
Keyword(s)
ERK signaling dynamics cell fate determination mechanistic modeling microfluidics parameter estimation
Language(s)
en
Contributor(s)
Blum, Yannick | |
Mikelson, Jan | |
Ryu, Hyunryul | |
Jeon, Noo Li | |
Khammash, Mustafa |
Additional Credits
Series
Molecular systems biology
Publisher
EMBO Press
ISSN
1744-4292
Access(Rights)
open.access