DocumentCode :
903688
Title :
Discrete dynamical system modelling for gene regulatory networks of 5-hydroxymethylfurfural tolerance for ethanologenic yeast
Author :
Song, M. ; Ouyang, Z. ; Liu, Z.L.
Author_Institution :
Dept. of Comput. Sci., New Mexico State Univ., Las Cruces, NM
Volume :
3
Issue :
3
fYear :
2009
fDate :
5/1/2009 12:00:00 AM
Firstpage :
203
Lastpage :
218
Abstract :
Composed of linear difference equations, a discrete dynamical system (DDS) model was designed to reconstruct transcriptional regulations in gene regulatory networks (GRNs) for ethanologenic yeast Saccharomyces cerevisiae in response to 5-hydroxymethylfurfural (HMF), a bioethanol conversion inhibitor. The modelling aims at identification of a system of linear difference equations to represent temporal interactions among significantly expressed genes. Power stability is imposed on a system model under the normal condition in the absence of the inhibitor. Non-uniform sampling, typical in a time-course experimental design, is addressed by a log-time domain interpolation. A statistically significant DDS model of the yeast GRN derived from time-course gene expression measurements by exposure to HMF, revealed several verified transcriptional regulation events. These events implicate Yap1 and Pdr3, transcription factors consistently known for their regulatory roles by other studies or postulated by independent sequence motif analysis, suggesting their involvement in yeast tolerance and detoxification of the inhibitor. [Includes supplementary material]
Keywords :
biology computing; genetics; microorganisms; molecular biophysics; organic compounds; 5-hydroxymethylfurfural tolerance; Saccharomyces cerevisiae; bioethanol conversion inhibitor; detoxification; discrete dynamical system modelling; ethanologenic yeast; gene regulatory networks; independent sequence motif analysis; linear difference equations; time-course gene expression; transcriptional regulations;
fLanguage :
English
Journal_Title :
Systems Biology, IET
Publisher :
iet
ISSN :
1751-8849
Type :
jour
DOI :
10.1049/iet-syb.2008.0089
Filename :
4957267
Link To Document :
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