Dynamical Criticality in Gene Regulatory Networks

Author:

Villani Marco12ORCID,La Rocca Luca1,Kauffman Stuart Alan3,Serra Roberto12

Affiliation:

1. Department of Physics, Informatics and Mathematics, University of Modena and Reggio Emilia, via Campi 213a, 41125 Modena, Italy

2. European Centre for Living Technology, San Marco 2940, 30124 Venezia, Italy

3. Institute for Systems Biology, Seattle 401 Terry Ave N, Seattle, WA 98109, USA

Abstract

A well-known hypothesis, with far-reaching implications, is that biological evolution should preferentially lead to states that are dynamically critical. In previous papers, we showed that a well-known model of genetic regulatory networks, namely, that of random Boolean networks, allows one to study in depth the relationship between the dynamical regime of a living being’s gene network and its response to permanent perturbations. In this paper, we analyze a huge set of new experimental data on single gene knockouts in S. cerevisiae, laying down a statistical framework to determine its dynamical regime. We find that the S. cerevisiae network appears to be slightly ordered, but close to the critical region. Since our analysis relies on dichotomizing continuous data, we carefully consider the issue of an optimal threshold choice.

Publisher

Hindawi Limited

Subject

Multidisciplinary,General Computer Science

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