Piecewise parametric chaotic model of p53 network based on the identified unifying framework of divergent p53 dynamics

dc.contributor.author Gökhan Demirkıran
dc.date.accessioned 2025-10-06T17:49:56Z
dc.date.issued 2022
dc.description.abstract Being the core of the large p53 protein (cancer) network the ATM-p53-Wip1 sub-network is known to confer monostable oscillations and fixed levels of p53 to the p53 network. Using a 2-Dimensional parametric model of this sub-network proposed by [68] we seek to know what other dynamical patterns are possible. Not to miss out on any pattern we analytically identify disjoint behavioral regions whose union covers the entire domain of equilibria in phase space. There exist five qualitatively different phase portraits leading to monostable dynamics birhythmicity single pulse dynamics and typical and atypical bistability. Such patterns are known to exist in the p53 network in wet-lab settings which evokes the idea that the underlying structure might be the ATM-p53-Wip1 sub-network. Additionally the extension of the model by an accumulating variable modeling the pro-apoptotic components of the p53 network has the potential to construct a homoclinic orbit which is shown in a piecewise fashion. Then we propose a piecewise system by explicitly embedding the perceived HC orbit using a biologically meaningful sliding surface. Using the Shilnikov Theorem for piecewise smooth systems we demonstrate mathematically the previously unobserved possibility of a chaotic mechanism in the p53 network which awaits further biological confirmation. Chaos is observed under the stringent and pathological conditions of failed-apoptosis and unrepairable DNA damage. Thus our results support the hypothesis that chaotic gene expressions accompany tumor formation. © 2022 Elsevier B.V. All rights reserved.
dc.identifier.doi 10.1016/j.chaos.2022.112300
dc.identifier.issn 09600779
dc.identifier.issn 0960-0779
dc.identifier.uri https://www.scopus.com/inward/record.uri?eid=2-s2.0-85132238201&doi=10.1016%2Fj.chaos.2022.112300&partnerID=40&md5=2df1939d346705e33cb8ef137a30fb06
dc.identifier.uri https://gcris.yasar.edu.tr/handle/123456789/8688
dc.language.iso English
dc.publisher Elsevier Ltd
dc.relation.ispartof Chaos, Solitons & Fractals
dc.source Chaos Solitons and Fractals
dc.subject Biological Oscillator, Bistability, Cancer, Chaos, Homoclinic Chaos, P53 Network, Bifurcation (mathematics), Cell Death, Diseases, Dynamical Systems, Dynamics, Phase Equilibria, Bi-stability, Biological Oscillators, Cancer, Chaotic Model, Chaotics, Homoclinic Chaos, Network-based, P53 Network, Piece-wise, Subnetworks, Gene Expression
dc.subject Bifurcation (mathematics), Cell death, Diseases, Dynamical systems, Dynamics, Phase equilibria, Bi-stability, Biological oscillators, Cancer, Chaotic model, Chaotics, Homoclinic chaos, Network-based, P53 network, Piece-wise, Subnetworks, Gene expression
dc.title Piecewise parametric chaotic model of p53 network based on the identified unifying framework of divergent p53 dynamics
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gdc.description.startpage 112300
gdc.description.volume 160
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person.identifier.scopus-author-id Demirkıran- Gökhan (57200319546)
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