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DYNAMIC FLUX BALANCE ANALYSIS FOR PREDICTING GENE OVEREXPRESSION EFFECTS IN BATCH CULTURES

Acceso Cerrado
ID Minciencias: ART-0000222828-201
Ranking: ART-ART_A2

Abstract:

The advent of numerous technological platforms for genome sequencing has led to increasing understanding and construction of metabolic networks. A popular system engineering strategy is used to analyze microbial metabolic networks is flux balance analysis (FBA). In recent times, there has been a lot of interest in the study of the metabolic network dynamics when genes are overexpressed in the system. Herein, an optimization framework, which employs dynamic flux balance analysis (DFBA) is proposed for predicting ethanol concentration profiles in glycerol fermentations using Escherichia coli. In silico results were experimentally validated by overexpressing alcohol/acetaldehyde dehydrogenase adhE, pyruvate kinase pykF, pyruvate formate-lyase pflB and isoleucine-valine enzymes ilvC and llvL.

Tópico:

Microbial Metabolic Engineering and Bioproduction

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Citations: 3
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Información de la Fuente:

SCImago Journal & Country Rank
FuenteJournal of Biological Systems
Cuartil año de publicaciónNo disponible
Volumen22
Issue03
Páginas327 - 338
pISSNNo disponible
ISSN0218-3390

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