Revealing determinants of two-phase dynamics of P53 network under gamma irradiation based on a reduced 2D relaxation oscillator model
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Date
2018
Authors
Gökhan Demirkıran
Güleser Kalayci Demir
Cüneyt Güzeliş
Journal Title
Journal ISSN
Volume Title
Publisher
Institution of Engineering and Technology journals@theiet.org
Open Access Color
GOLD
Green Open Access
Yes
OpenAIRE Downloads
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Publicly Funded
No
Abstract
This study proposes a two-dimensional (2D) oscillator model of p53 network which is derived via reducing the multidimensional two-phase dynamics model into a model of ataxia telangiectasia mutated (ATM) and Wip1 variables and studies the impact of p53-regulators on cell fate decision. First the authors identify a 6D core oscillator module then reduce this module into a 2D oscillator model while preserving the qualitative behaviours. The introduced 2D model is shown to be an excitable relaxation oscillator. This oscillator provides a mechanism that leads diverse modes underpinning cell fate each corresponding to a cell state. To investigate the effects of p53 inhibitors and the intrinsic time delay of Wip1 on the characteristics of oscillations they introduce also a delay differential equation version of the 2D oscillator. They observe that the suppression of p53 inhibitors decreases the amplitudes of p53 oscillation though the suppression increases the sustained level of p53. They identify Wip1 and P53DINP1 as possible targets for cancer therapies considering their impact on the oscillator supported by biological findings. They model some mutations as critical changes of the phase space characteristics. Possible cancer therapeutic strategies are then proposed for preventing these mutations' effects using the phase space approach. © 2018 Elsevier B.V. All rights reserved.
Description
Keywords
Carrier Protein, Phosphoprotein Phosphatase, Protein Phosphatase 2c, Ataxia Telangiectasia Mutated Proteins, Carrier Proteins, Heat-shock Proteins, Ppm1d Protein Human, Protein Phosphatase 2c, Tp53inp1 Protein Human, Tumor Suppressor Protein P53, Differential Equations, Diseases, Irradiation, Phase Space Methods, Ataxia-telangiectasia Mutated, Cell Fate Decision, Delay Differential Equations, Gamma Irradiation, Oscillator Model, Oscillator Module, Therapeutic Strategy, Two Dimensional (2 D), Relaxation Oscillators, Atm Protein, Carrier Protein, Heat Shock Protein, Ppm1d Protein Human, Protein P53, Protein Phosphatase 2c, Tp53inp1 Protein Human, Gamma Radiation, Metabolism, Neoplasm, Physiology, Theoretical Model, Ataxia Telangiectasia Mutated Proteins, Carrier Proteins, Gamma Rays, Heat-shock Proteins, Models Theoretical, Neoplasms, Protein Phosphatase 2c, Tumor Suppressor Protein P53, Differential equations, Diseases, Irradiation, Phase space methods, Ataxia-telangiectasia mutated, Cell fate decision, Delay differential equations, Gamma irradiation, Oscillator model, Oscillator module, Therapeutic strategy, Two Dimensional (2 D), Relaxation oscillators, ATM protein, carrier protein, heat shock protein, PPM1D protein human, protein p53, protein phosphatase 2c, TP53INP1 protein human, gamma radiation, metabolism, neoplasm, physiology, theoretical model, Ataxia Telangiectasia Mutated Proteins, Carrier Proteins, Gamma Rays, Heat-Shock Proteins, Models Theoretical, Neoplasms, Protein Phosphatase 2C, Tumor Suppressor Protein p53, Mdm2 Downregulation, Cellular Biophysics, 2D Relaxation Oscillator Model, Enzymes, Cell Cycle Arrest, Difference Equations, ATM Deficiency, Physiological Models, State-Dependent Delay Differential Equation, Excitable Relaxation Oscillator, Cancer Therapies, Mutation Effects, Wip1 Downregulation, Wip1 Time Delay, Two-Phase Dynamics Model, Mdm2 Overexpression, ATM Model, P53-regulators, Phase Space Approach, Wip1 Variables, Wip1 Overexpression, Cell Fate Decision, Delays, Biochemistry, Radiation Therapy, P53 Network, Gamma Irradiation, Gamma-rays, Cell Apoptosis, Cancer, Molecular Biophysics, Artificial intelligence, Control (management), Ataxia Telangiectasia Mutated Proteins, Phase space, Quantum mechanics, Ataxia-telangiectasia, Neoplasms, Biochemistry, Genetics and Molecular Biology, Control theory (sociology), Genetics, Molecular Biology, Biology, Heat-Shock Proteins, Physics, Oscillation (cell signaling), Life Sciences, Cell Biology, DNA, Models, Theoretical, Regulation and Function of Microtubules in Cell Division, Computer science, Protein Phosphatase 2C, Stochasticity in Gene Regulatory Networks, Gamma Rays, Biological system, FOS: Biological sciences, Regulation of RNA Processing and Function, DNA damage, Bistability, Statistical physics, Tumor Suppressor Protein p53, Single-Cell Analysis, Carrier Proteins, Research Article
Fields of Science
0301 basic medicine, 03 medical and health sciences, 0303 health sciences
Citation
WoS Q
Scopus Q

OpenCitations Citation Count
4
Source
IET Systems Biology
Volume
12
Issue
1
Start Page
26
End Page
38
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Citations
CrossRef : 4
Scopus : 5
PubMed : 2
Captures
Mendeley Readers : 17
SCOPUS™ Citations
5
checked on Apr 09, 2026
Web of Science™ Citations
5
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