Signal transduction controls heterogeneous NF-κB dynamics and target gene expression through cytokine-specific refractory states

In biological systems, timing is often critical to the interpretation of signals that determine cell fate. Here the authors demonstrate how single cells and cellular populations respond dynamically to pulsatile stimulation by TNFα and IL-1β, and suggest a mechanism by which the two cytokines can syn...

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Autores principales: Antony Adamson, Christopher Boddington, Polly Downton, William Rowe, James Bagnall, Connie Lam, Apolinar Maya-Mendoza, Lorraine Schmidt, Claire V. Harper, David G. Spiller, David A. Rand, Dean A. Jackson, Michael R. H. White, Pawel Paszek
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Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/1d4f418033bb45d7b771ae8b6ba8118e
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spelling oai:doaj.org-article:1d4f418033bb45d7b771ae8b6ba8118e2021-12-02T16:57:39ZSignal transduction controls heterogeneous NF-κB dynamics and target gene expression through cytokine-specific refractory states10.1038/ncomms120572041-1723https://doaj.org/article/1d4f418033bb45d7b771ae8b6ba8118e2016-07-01T00:00:00Zhttps://doi.org/10.1038/ncomms12057https://doaj.org/toc/2041-1723In biological systems, timing is often critical to the interpretation of signals that determine cell fate. Here the authors demonstrate how single cells and cellular populations respond dynamically to pulsatile stimulation by TNFα and IL-1β, and suggest a mechanism by which the two cytokines can synergistically modulate inflammation.Antony AdamsonChristopher BoddingtonPolly DowntonWilliam RoweJames BagnallConnie LamApolinar Maya-MendozaLorraine SchmidtClaire V. HarperDavid G. SpillerDavid A. RandDean A. JacksonMichael R. H. WhitePawel PaszekNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-14 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Antony Adamson
Christopher Boddington
Polly Downton
William Rowe
James Bagnall
Connie Lam
Apolinar Maya-Mendoza
Lorraine Schmidt
Claire V. Harper
David G. Spiller
David A. Rand
Dean A. Jackson
Michael R. H. White
Pawel Paszek
Signal transduction controls heterogeneous NF-κB dynamics and target gene expression through cytokine-specific refractory states
description In biological systems, timing is often critical to the interpretation of signals that determine cell fate. Here the authors demonstrate how single cells and cellular populations respond dynamically to pulsatile stimulation by TNFα and IL-1β, and suggest a mechanism by which the two cytokines can synergistically modulate inflammation.
format article
author Antony Adamson
Christopher Boddington
Polly Downton
William Rowe
James Bagnall
Connie Lam
Apolinar Maya-Mendoza
Lorraine Schmidt
Claire V. Harper
David G. Spiller
David A. Rand
Dean A. Jackson
Michael R. H. White
Pawel Paszek
author_facet Antony Adamson
Christopher Boddington
Polly Downton
William Rowe
James Bagnall
Connie Lam
Apolinar Maya-Mendoza
Lorraine Schmidt
Claire V. Harper
David G. Spiller
David A. Rand
Dean A. Jackson
Michael R. H. White
Pawel Paszek
author_sort Antony Adamson
title Signal transduction controls heterogeneous NF-κB dynamics and target gene expression through cytokine-specific refractory states
title_short Signal transduction controls heterogeneous NF-κB dynamics and target gene expression through cytokine-specific refractory states
title_full Signal transduction controls heterogeneous NF-κB dynamics and target gene expression through cytokine-specific refractory states
title_fullStr Signal transduction controls heterogeneous NF-κB dynamics and target gene expression through cytokine-specific refractory states
title_full_unstemmed Signal transduction controls heterogeneous NF-κB dynamics and target gene expression through cytokine-specific refractory states
title_sort signal transduction controls heterogeneous nf-κb dynamics and target gene expression through cytokine-specific refractory states
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/1d4f418033bb45d7b771ae8b6ba8118e
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