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Dynamic Cross Talk Model of the Epithelial Innate Immune Response to Double-Stranded RNA Stimulation: Coordinated Dynamics Emerging from Cell-Level Noise

We present an integrated dynamical cross-talk model of the epithelial innate immune reponse (IIR) incorporating RIG-I and TLR3 as the two major pattern recognition receptors (PRR) converging on the RelA and IRF3 transcriptional effectors. bioPN simulations reproduce biologically relevant gene-and pr...

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Autores principales: Bertolusso, Roberto, Tian, Bing, Zhao, Yingxin, Vergara, Leoncio, Sabree, Aqeeb, Iwanaszko, Marta, Lipniacki, Tomasz, Brasier, Allan R., Kimmel, Marek
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3977818/
https://www.ncbi.nlm.nih.gov/pubmed/24710104
http://dx.doi.org/10.1371/journal.pone.0093396
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author Bertolusso, Roberto
Tian, Bing
Zhao, Yingxin
Vergara, Leoncio
Sabree, Aqeeb
Iwanaszko, Marta
Lipniacki, Tomasz
Brasier, Allan R.
Kimmel, Marek
author_facet Bertolusso, Roberto
Tian, Bing
Zhao, Yingxin
Vergara, Leoncio
Sabree, Aqeeb
Iwanaszko, Marta
Lipniacki, Tomasz
Brasier, Allan R.
Kimmel, Marek
author_sort Bertolusso, Roberto
collection PubMed
description We present an integrated dynamical cross-talk model of the epithelial innate immune reponse (IIR) incorporating RIG-I and TLR3 as the two major pattern recognition receptors (PRR) converging on the RelA and IRF3 transcriptional effectors. bioPN simulations reproduce biologically relevant gene-and protein abundance measurements in response to time course, gene silencing and dose-response perturbations both at the population and single cell level. Our computational predictions suggest that RelA and IRF3 are under auto- and cross-regulation. We predict, and confirm experimentally, that RIG-I mRNA expression is controlled by IRF7. We also predict the existence of a TLR3-dependent, IRF3-independent transcription factor (or factors) that control(s) expression of MAVS, IRF3 and members of the IKK family. Our model confirms the observed dsRNA dose-dependence of oscillatory patterns in single cells, with periods of 1–3 hr. Model fitting to time series, matched by knockdown data suggests that the NF-κB module operates in a different regime (with different coefficient values) than in the TNFα-stimulation experiments. In future studies, this model will serve as a foundation for identification of virus-encoded IIR antagonists and examination of stochastic effects of viral replication. Our model generates simulated time series, which reproduce the noisy oscillatory patterns of activity (with 1–3 hour period) observed in individual cells. Our work supports the hypothesis that the IIR is a phenomenon that emerged by evolution despite highly variable responses at an individual cell level.
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spelling pubmed-39778182014-04-11 Dynamic Cross Talk Model of the Epithelial Innate Immune Response to Double-Stranded RNA Stimulation: Coordinated Dynamics Emerging from Cell-Level Noise Bertolusso, Roberto Tian, Bing Zhao, Yingxin Vergara, Leoncio Sabree, Aqeeb Iwanaszko, Marta Lipniacki, Tomasz Brasier, Allan R. Kimmel, Marek PLoS One Research Article We present an integrated dynamical cross-talk model of the epithelial innate immune reponse (IIR) incorporating RIG-I and TLR3 as the two major pattern recognition receptors (PRR) converging on the RelA and IRF3 transcriptional effectors. bioPN simulations reproduce biologically relevant gene-and protein abundance measurements in response to time course, gene silencing and dose-response perturbations both at the population and single cell level. Our computational predictions suggest that RelA and IRF3 are under auto- and cross-regulation. We predict, and confirm experimentally, that RIG-I mRNA expression is controlled by IRF7. We also predict the existence of a TLR3-dependent, IRF3-independent transcription factor (or factors) that control(s) expression of MAVS, IRF3 and members of the IKK family. Our model confirms the observed dsRNA dose-dependence of oscillatory patterns in single cells, with periods of 1–3 hr. Model fitting to time series, matched by knockdown data suggests that the NF-κB module operates in a different regime (with different coefficient values) than in the TNFα-stimulation experiments. In future studies, this model will serve as a foundation for identification of virus-encoded IIR antagonists and examination of stochastic effects of viral replication. Our model generates simulated time series, which reproduce the noisy oscillatory patterns of activity (with 1–3 hour period) observed in individual cells. Our work supports the hypothesis that the IIR is a phenomenon that emerged by evolution despite highly variable responses at an individual cell level. Public Library of Science 2014-04-07 /pmc/articles/PMC3977818/ /pubmed/24710104 http://dx.doi.org/10.1371/journal.pone.0093396 Text en © 2014 Bertolusso et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Bertolusso, Roberto
Tian, Bing
Zhao, Yingxin
Vergara, Leoncio
Sabree, Aqeeb
Iwanaszko, Marta
Lipniacki, Tomasz
Brasier, Allan R.
Kimmel, Marek
Dynamic Cross Talk Model of the Epithelial Innate Immune Response to Double-Stranded RNA Stimulation: Coordinated Dynamics Emerging from Cell-Level Noise
title Dynamic Cross Talk Model of the Epithelial Innate Immune Response to Double-Stranded RNA Stimulation: Coordinated Dynamics Emerging from Cell-Level Noise
title_full Dynamic Cross Talk Model of the Epithelial Innate Immune Response to Double-Stranded RNA Stimulation: Coordinated Dynamics Emerging from Cell-Level Noise
title_fullStr Dynamic Cross Talk Model of the Epithelial Innate Immune Response to Double-Stranded RNA Stimulation: Coordinated Dynamics Emerging from Cell-Level Noise
title_full_unstemmed Dynamic Cross Talk Model of the Epithelial Innate Immune Response to Double-Stranded RNA Stimulation: Coordinated Dynamics Emerging from Cell-Level Noise
title_short Dynamic Cross Talk Model of the Epithelial Innate Immune Response to Double-Stranded RNA Stimulation: Coordinated Dynamics Emerging from Cell-Level Noise
title_sort dynamic cross talk model of the epithelial innate immune response to double-stranded rna stimulation: coordinated dynamics emerging from cell-level noise
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3977818/
https://www.ncbi.nlm.nih.gov/pubmed/24710104
http://dx.doi.org/10.1371/journal.pone.0093396
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