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Heterogeneous responses to low level death receptor activation are explained by random molecular assembly of the Caspase-8 activation platform

Ligand binding to death receptors activates apoptosis in cancer cells. Stimulation of death receptors results in the formation of intracellular multiprotein platforms that either activate the apoptotic initiator Caspase-8 to trigger cell death, or signal through kinases to initiate inflammatory and...

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Autores principales: Matveeva, Anna, Fichtner, Michael, McAllister, Katherine, McCann, Christopher, Sturrock, Marc, Longley, Daniel B., Prehn, Jochen H. M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6779275/
https://www.ncbi.nlm.nih.gov/pubmed/31553717
http://dx.doi.org/10.1371/journal.pcbi.1007374
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author Matveeva, Anna
Fichtner, Michael
McAllister, Katherine
McCann, Christopher
Sturrock, Marc
Longley, Daniel B.
Prehn, Jochen H. M.
author_facet Matveeva, Anna
Fichtner, Michael
McAllister, Katherine
McCann, Christopher
Sturrock, Marc
Longley, Daniel B.
Prehn, Jochen H. M.
author_sort Matveeva, Anna
collection PubMed
description Ligand binding to death receptors activates apoptosis in cancer cells. Stimulation of death receptors results in the formation of intracellular multiprotein platforms that either activate the apoptotic initiator Caspase-8 to trigger cell death, or signal through kinases to initiate inflammatory and cell survival signalling. Two of these platforms, the Death-Inducing Signalling Complex (DISC) and the RIPoptosome, also initiate necroptosis by building filamentous scaffolds that lead to the activation of mixed lineage kinase domain-like pseudokinase. To explain cell decision making downstream of death receptor activation, we developed a semi-stochastic model of DISC/RIPoptosome formation. The model is a hybrid of a direct Gillespie stochastic simulation algorithm for slow assembly of the RIPoptosome and a deterministic model of downstream caspase activation. The model explains how alterations in the level of death receptor-ligand complexes, their clustering properties and intrinsic molecular fluctuations in RIPoptosome assembly drive heterogeneous dynamics of Caspase-8 activation. The model highlights how kinetic proofreading leads to heterogeneous cell responses and results in fractional cell killing at low levels of receptor stimulation. It reveals that the noise in Caspase-8 activation—exclusively caused by the stochastic molecular assembly of the DISC/RIPoptosome platform—has a key function in extrinsic apoptotic stimuli recognition.
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spelling pubmed-67792752019-10-18 Heterogeneous responses to low level death receptor activation are explained by random molecular assembly of the Caspase-8 activation platform Matveeva, Anna Fichtner, Michael McAllister, Katherine McCann, Christopher Sturrock, Marc Longley, Daniel B. Prehn, Jochen H. M. PLoS Comput Biol Research Article Ligand binding to death receptors activates apoptosis in cancer cells. Stimulation of death receptors results in the formation of intracellular multiprotein platforms that either activate the apoptotic initiator Caspase-8 to trigger cell death, or signal through kinases to initiate inflammatory and cell survival signalling. Two of these platforms, the Death-Inducing Signalling Complex (DISC) and the RIPoptosome, also initiate necroptosis by building filamentous scaffolds that lead to the activation of mixed lineage kinase domain-like pseudokinase. To explain cell decision making downstream of death receptor activation, we developed a semi-stochastic model of DISC/RIPoptosome formation. The model is a hybrid of a direct Gillespie stochastic simulation algorithm for slow assembly of the RIPoptosome and a deterministic model of downstream caspase activation. The model explains how alterations in the level of death receptor-ligand complexes, their clustering properties and intrinsic molecular fluctuations in RIPoptosome assembly drive heterogeneous dynamics of Caspase-8 activation. The model highlights how kinetic proofreading leads to heterogeneous cell responses and results in fractional cell killing at low levels of receptor stimulation. It reveals that the noise in Caspase-8 activation—exclusively caused by the stochastic molecular assembly of the DISC/RIPoptosome platform—has a key function in extrinsic apoptotic stimuli recognition. Public Library of Science 2019-09-25 /pmc/articles/PMC6779275/ /pubmed/31553717 http://dx.doi.org/10.1371/journal.pcbi.1007374 Text en © 2019 Matveeva 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Matveeva, Anna
Fichtner, Michael
McAllister, Katherine
McCann, Christopher
Sturrock, Marc
Longley, Daniel B.
Prehn, Jochen H. M.
Heterogeneous responses to low level death receptor activation are explained by random molecular assembly of the Caspase-8 activation platform
title Heterogeneous responses to low level death receptor activation are explained by random molecular assembly of the Caspase-8 activation platform
title_full Heterogeneous responses to low level death receptor activation are explained by random molecular assembly of the Caspase-8 activation platform
title_fullStr Heterogeneous responses to low level death receptor activation are explained by random molecular assembly of the Caspase-8 activation platform
title_full_unstemmed Heterogeneous responses to low level death receptor activation are explained by random molecular assembly of the Caspase-8 activation platform
title_short Heterogeneous responses to low level death receptor activation are explained by random molecular assembly of the Caspase-8 activation platform
title_sort heterogeneous responses to low level death receptor activation are explained by random molecular assembly of the caspase-8 activation platform
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6779275/
https://www.ncbi.nlm.nih.gov/pubmed/31553717
http://dx.doi.org/10.1371/journal.pcbi.1007374
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