A Canonical 3-D P53 Network Model that Determines Cell Fate by Counting Pulses

Loading...
Publication Logo

Date

2018

Authors

Gokhan Demirkiran
Guleser Kalayci Demir
Cuneyt Guzelis

Journal Title

Journal ISSN

Volume Title

Publisher

ISTANBUL UNIV FAC ENGINEERING

Open Access Color

GOLD

Green Open Access

Yes

OpenAIRE Downloads

OpenAIRE Views

Publicly Funded

No
Impulse
Average
Influence
Average
Popularity
Average

Research Projects

Journal Issue

Abstract

From a system theory perspective p53 network dynamics is interesting since it can exhibit three dynamical modes of p53 namely low-level equilibrium oscillation and high-level equilibrium. Each of these modes are associated with different cell fate outcomes: cell survival cell cycle arrest and apoptosis. The literature reveals that a high level (apoptosis) is seen only after ending the oscillation phase so called two-phase dynamics which provides the decision of apoptosis depending on the oscillation duration. This paper proposes that a negative feedback can keep time by counting the pulses of oscillation to take the decision of apoptosis or cell survival. P53DINP1 which is the mediator of this feedback is added as a variable to a 2-D oscillator model of the p53 network. The resulting canonical 3-D model successfully replicates the two-phase dynamics. That is it possesses temporary oscillatory behavior in which first oscillations (first phase) and then high level state (second phase) are observed. By introducing a new variable to the core oscillator in the p53 network this study demonstrates that p53 network can be considered a modular structure which consists of an oscillator and other variables that control this oscillator to contribute to cell fate determination.

Description

Keywords

Oscillators, p53 network, two-phase dynamics, gene regulatory networks, cell fate, P53DINP1, 2-PHASE DYNAMICS, PROTEIN, COMPLEX, Oscillators, Hücre Biyolojisi, Gene Regulatory Networks, Two-Phase Dynamics, Biyoloji, Cell Fate, P53 Network, Biyokimya Ve Moleküler Biyoloji, P53DINP1, Genetik Ve Kalıtım, Engineering, Mühendislik, Oscillators;p53 network;two-phase dynamics;gene regulatory networks;cell fate, Oscillators;p53 network;two-phase dynamics;gene regulatory networks;cell fate;P53DINP1

Fields of Science

0301 basic medicine, 0303 health sciences, 03 medical and health sciences

Citation

WoS Q

Scopus Q

OpenCitations Logo
OpenCitations Citation Count
2

Source

ELECTRICA

Volume

18

Issue

2

Start Page

284

End Page

291
PlumX Metrics
Citations

CrossRef : 2

Scopus : 4

Captures

Mendeley Readers : 3

Google Scholar Logo
Google Scholar™
OpenAlex Logo
OpenAlex FWCI
0.1855

Sustainable Development Goals