A 2-dimensional model of polynomial type for oscillatory ATM-Wipl dynamics in p53 network

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Date

2017

Authors

Gökhan Demirkıran
Güleser Kalayci Demir
Cüneyt Güzeliş

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Publisher

Institute of Electrical and Electronics Engineers Inc.

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Abstract

Under gamma irradiation p53 gene regulatory network is able to exhibit three different modes namely low state oscillations and high state. There are experimental studies demonstrating that oscillatory behaviour of p53 is due to the interaction between upstream mediator of p53 i.e. ATM and a negative feedback loop formed by Wipl with that upstream. By proposing a canonical model based on ordinary differential equations made up of polynomial type birth and death terms we show mathematically that the simple interaction between ATM and Wipl is indeed able to exhibit three different behaviours relevant to DNA damage response of p53 network. We further carry out bifurcation analysis on the model with the aim of investigating the mutations such as Wip1 overexpression and ATM deficiency. Based on the proposed canonical model we show that Wipl is an important target for curing these types of mutations. © 2023 Elsevier B.V. All rights reserved.

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Keywords

Bifurcation (mathematics), Internet Protocols, Ordinary Differential Equations, 2 - Dimensional, Canonical Models, Dimensional Model, Gamma Irradiation, Gene Regulatory Networks, Model-based Opc, Negative Feedback Loop, Oscillatory Behaviors, P53 Gene, Simple++, Irradiation, Bifurcation (mathematics), Internet protocols, Ordinary differential equations, 2 - Dimensional, Canonical models, Dimensional model, Gamma irradiation, Gene regulatory networks, Model-based OPC, Negative feedback loop, Oscillatory behaviors, P53 gene, Simple++, Irradiation

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Source

10th International Conference on Electrical and Electronics Engineering ELECO 2017

Volume

2018-January

Issue

Start Page

598

End Page

601
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