The apoptosome molecular timer synergises with XIAP to suppress apoptosis execution and contributes to prognosticating survival in colorectal cancer

dc.contributor.authorFullstone, Gavin
dc.contributor.authorBauer, Tabea L.
dc.contributor.authorGuttà, Cristiano
dc.contributor.authorSalvucci, Manuela
dc.contributor.authorPrehn, Jochen H. M.
dc.contributor.authorRehm, Markus
dc.date.accessioned2023-06-27T13:07:56Z
dc.date.available2023-06-27T13:07:56Z
dc.date.issued2020de
dc.date.updated2023-05-16T02:23:27Z
dc.description.abstractThe execution phase of apoptosis is a critical process in programmed cell death in response to a multitude of cellular stresses. A crucial component of this pathway is the apoptosome, a platform for the activation of pro-caspase 9 (PC9). Recent findings have shown that autocleavage of PC9 to Caspase 9 (C9) p35/p12 not only permits XIAP-mediated C9 inhibition but also temporally shuts down apoptosome activity, forming a molecular timer. In order to delineate the combined contributions of XIAP and the apoptosome molecular timer to apoptosis execution we utilised a systems modelling approach. We demonstrate that cooperative recruitment of PC9 to the apoptosome, based on existing PC9-apoptosome interaction data, is important for efficient formation of PC9 homodimers, autocatalytic cleavage and dual regulation by XIAP and the molecular timer across biologically relevant PC9 and APAF1 concentrations. Screening physiologically relevant concentration ranges of apoptotic proteins, we discovered that the molecular timer can prevent apoptosis execution in specific scenarios after complete or partial mitochondrial outer membrane permeabilisation (MOMP). Furthermore, its ability to prevent apoptosis is intricately tied to a synergistic combination with XIAP. Finally, we demonstrate that simulations of these processes are prognostic of survival in stage III colorectal cancer and that the molecular timer may promote apoptosis resistance in a subset of patients. Based on our findings, we postulate that the physiological function of the molecular timer is to aid XIAP in the shutdown of caspase-mediated apoptosis execution. This shutdown potentially facilitates switching to pro-inflammatory caspase-independent responses subsequent to Bax/Bak pore formation.en
dc.description.sponsorshipDeutsche Forschungsgemeinschaft (German Research Foundation)de
dc.description.sponsorshipScience Foundation Ireland (SFI)de
dc.description.sponsorshipProjekt DEALde
dc.identifier.issn1350-9047
dc.identifier.issn1476-5403
dc.identifier.other1852595833
dc.identifier.urihttp://nbn-resolving.de/urn:nbn:de:bsz:93-opus-ds-132628de
dc.identifier.urihttp://elib.uni-stuttgart.de/handle/11682/13262
dc.identifier.urihttp://dx.doi.org/10.18419/opus-13243
dc.language.isoende
dc.relation.uridoi:10.1038/s41418-020-0545-9de
dc.rightsinfo:eu-repo/semantics/openAccessde
dc.rights.urihttps://creativecommons.org/licenses/by/4.0/de
dc.subject.ddc570de
dc.subject.ddc610de
dc.titleThe apoptosome molecular timer synergises with XIAP to suppress apoptosis execution and contributes to prognosticating survival in colorectal canceren
dc.typearticlede
ubs.fakultaetEnergie-, Verfahrens- und Biotechnikde
ubs.fakultaetFakultäts- und hochschulübergreifende Einrichtungende
ubs.fakultaetFakultätsübergreifend / Sonstige Einrichtungde
ubs.institutInstitut für Zellbiologie und Immunologiede
ubs.institutStuttgart Research Center Systems Biology (SRCSB)de
ubs.institutStuttgarter Zentrum für Simulationswissenschaften (SC SimTech)de
ubs.institutFakultätsübergreifend / Sonstige Einrichtungde
ubs.publikation.seiten2828-2842de
ubs.publikation.sourceCell death & differentiation 27 (2020), S. 2828-2842de
ubs.publikation.typZeitschriftenartikelde

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