Artículos de revistas
Evolutionary algorithm for metabolic pathways synthesis
Fecha
2016-06Registro en:
Gerard, Matias Fernando; Stegmayer, Georgina; Milone, Diego Humberto; Evolutionary algorithm for metabolic pathways synthesis; Elsevier; Biosystems; 144; 6-2016; 55-67
0303-2647
CONICET Digital
CONICET
Autor
Gerard, Matias Fernando
Stegmayer, Georgina
Milone, Diego Humberto
Resumen
Metabolic pathway building is an active field of research, necessary to understand and manipulate the metabolism of organisms. There are different approaches, mainly based on classical search methods, to find linear sequences of reactions linking two compounds. However, an important limitation of these methods is the exponential increase of search trees when a large number of compounds and reactions is considered. Besides, such models do not take into account all substrates for each reaction during the search, leading to solutions that lack biological feasibility in many cases. This work proposes a new evolutionary algorithm that allows searching not only linear, but also branched metabolic pathways, formed by feasible reactions that relate multiple compounds simultaneously. Tests performed using several sets of reactions show that this algorithm is able to find feasible linear and branched metabolic pathways.