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Modelling the effect of phosphorylation on the circadian clock of Drosophila

cnea.tipodocumentoARTÍCULO CIENTÍFICO
dc.contributor.authorRisau Gusman, Sebastian Luis
dc.contributor.authorGleiser, Pablo Martin
dc.date.accessioned2025-12-11T23:17:05Z
dc.date.available2025-12-11T23:17:05Z
dc.date.issued2012-05
dc.description.abstractIt is by now well known that, at the molecular level, the core of the circadian clock of most living species is a negative feedback loop where some proteins inhibit their own transcription. However, it has recently been shown that post-translational processes, such as phosphorylations, are essential for a correct timing of the clock. Depending on which sites of a circadian protein are phosphorylated, different properties such as degradation, nuclear localization and repressing power can be altered. Furthermore, phosphorylation domains can be related in a positive way, giving rise to consecutive phosphorylations, or in a negative way, hindering phosphorylation at other domains. Here we present a simple mathematical model of a circadian protein having two mutually exclusive domains of phosphorylation. We show that the system has limit cycles that arise from a unique fixed point through a Hopf bifurcation. We find a set of parameters, with realistic values, for which the limit cycle has the same period as the wild type circadian oscillations of the fruit fly. The domains act as a switch, in the sense that alterations in their phosphorylation can alter the period of circadian oscillation in opposite ways, increasing or decreasing the period of the wild type oscillations. In particular, we show that our model is able to reproduce some of the experimental results found for switch-like phosphorylations of the . PER protein of the circadian clock of the fly .
dc.description.institutionalaffiliationFil: Risau Gusman, Sebastian Luis. Consejo Nacional de Investigaciones Científicas y Técnicas. Centro Científico Tecnológico Conicet - Patagonia Norte; Argentina. Comisión Nacional de Energía Atómica. Gerencia del Área de Investigación y Aplicaciones No Nucleares. Gerencia de Física (Centro Atómico Bariloche); Argentina
dc.description.institutionalaffiliationFil: Gleiser, Pablo Martin. Comisión Nacional de Energía Atómica. Gerencia del Área de Investigación y Aplicaciones No Nucleares. Gerencia de Física (Centro Atómico Bariloche); Argentina. Comisión Nacional de Energía Atómica. Gerencia del Área de Energía Nuclear. Instituto Balseiro; Argentina. Consejo Nacional de Investigaciones Científicas y Técnicas. Centro Científico Tecnológico Conicet - Patagonia Norte; Argentina
dc.identifier.issn0022-5193
dc.identifier.urihttps://nuclea.cnea.gob.ar/handle/20.500.12553/8003
dc.publisherAcademic Press Ltd - Elsevier Science Ltd
dc.relationinfo:eu-repo/semantics/reference/hdl/11336/189686
dc.relationinfo:eu-repo/semantics/altIdentifier/url/https://linkinghub.elsevier.com/retrieve/pii/S0022-5193(12)00228-7
dc.relationinfo:eu-repo/semantics/altIdentifier/doi/http://dx.doi.org/10.1016/j.jtbi.2012.05.003
dc.rights.licenseinfo:eu-repo/semantics/openAccess
dc.rights.licensehttps://creativecommons.org/licenses/by-nc-sa/2.5/ar/
dc.subjectCOMPLEX SYSTEMS
dc.subjectDYNAMICAL SYSTEMS
dc.subjectSYSTEMS BIOLOGY
dc.subjectBiología
dc.subjectCiencias Biológicas
dc.subjectCIENCIAS NATURALES Y EXACTAS
dc.titleModelling the effect of phosphorylation on the circadian clock of Drosophila
dc.typeARTÍCULO
dc.type.versionVersión publicada

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