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GINsim: a software suite for the qualitative modelling, simulation and analysis of regulatory networks.

by: A. Gonzalez Gonzalez, A. Naldi, L. Sánchez, D. Thieffry, C. Chaouiya
Bio Systems In Selected Papers from Workshop at Dynamical Modeling of Biological Regulatory Networks - ICSB 2004, Vol. 84, No. 2. (May 2006), pp. 91-100, doi:10.1016/j.biosystems.2005.10.003  Key: citeulike:616560

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Abstract

This paper presents GINsim, a Java software suite devoted to the qualitative modelling, analysis and simulation of genetic regulatory networks. Formally, our approach leans on discrete mathematical and graph-theoretical concepts. GINsim encompasses an intuitive graph editor, enabling the definition and the parameterisation of a regulatory graph, as well as a simulation engine to compute the corresponding qualitative dynamical behaviour. Our computational approach is illustrated by a preliminary model analysis of the inter-cellular regulatory network activating Notch at the dorsal-ventral boundary in the wing imaginal disc of Drosophila. We focus on the cross-regulations between five genes (within and between two cells), which implements the dorsal-ventral border in the developing imaginal disc. Our simulations qualitatively reproduce the wild-type developmental pathway, as well as the outcome of various types of experimental perturbations, such as loss-of-function mutations or ectopically induced gene expression.


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