paper-with-me

홈 › Papers

Graphical Requirements for Multistationarity in Reaction Networks and their Verification in BioModels

2018-09-24

Thomas's necessary conditions for the existence of multiple steady states in gene networks have been proved by Soul\'e with high generality for dynamical systems defined by differential equations. When applied to (protein) reaction networks however, those conditions do not provide information since they are trivially satisfied as soon as there is a bimolecular or a reversible reaction. Refined graphical requirements have been proposed to deal with such cases. In this paper, we present for the first time a graph rewriting algorithm for checking the refined conditions given by Soliman, and evaluate its practical performance by applying it systematically to the curated branch of the BioModels repository. This algorithm analyzes all reaction networks (of size up to 430 species) in less than 0.05 second per network, and permits to conclude to the absence of multistationarity in 160 networks over 506. The short computation times obtained in this graphical approach are in sharp contrast to the Jacobian-based symbolic computation approach. We also discuss the case of one extra graphical condition by arc rewiring that allows us to conclude on 20 more networks of this benchmark but with a high computational cost. Finally, we study with some details the case of phosphorylation cycles and MAPK signalling models which show the importance of modelling the intermediate complexations with the enzymes in order to correctly analyze the multistationarity capabilities of such biochemical reaction networks.

📄 PDF Abstract BibTeX arXiv:1809.08891

Code (0)

등록된 구현이 없습니다.

Tasks

ARC

Similar Papers 제목 키워드 기반

Understanding Multistationarity of Fully Open Reaction Networks

2024-07-01 · Shenghao Yao, AmirHosein Sadeghimanesh, Matthew England

This work addresses multistationarity of fully open reaction networks equipped with mass action kinetics. We improve upon the existing results relating existence of positive feedback loops in a reaction network and multi…

EpidemiologyGraph AttentionGraph Learning

Connectivity of Parameter Regions of Multistationarity for Multisite Phosphorylation Networks

2024-03-25 · Nidhi Kaihnsa, Máté L. Telek

The parameter region of multistationarity of a reaction network contains all the parameters for which the associated dynamical system exhibits multiple steady states. Describing this region is challenging and remains an …

A reaction network approach to modeling carbon dioxide removal systems

2024-12-23 · Noel Fortun, Piolo Gaspar, Editha Jose, Angelyn Lao 외

This paper focuses on what we call Reaction Network Cardon Dioxide Removal (RNDCR) framework to analyze several proposed negative emissions technologies (NETs) so as to determine when present-day Earth carbon cycle syste…

Multistationarity questions in reduced vs extended biochemical networks

2023-10-03 · Alicia Dickenstein, Magalí Giaroli, Mercedes Pérez Millán, Rick Rischter

We address several questions in reduced versus extended networks via the elimination or addition of intermediate complexes in the framework of chemical reaction networks with mass-action kinetics. We clarify and extend a…

The multistationarity structure of networks with intermediates and a binomial core network

2019-08-23

This work addresses whether a reaction network, taken with mass-action kinetics, is multistationary, that is, admits more than one positive steady state in some stoichiometric compatibility class. We build on previous wo…