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Achcar F, et al.  (2011) A Boolean probabilistic model of metabolic adaptation to oxygen in relation to iron homeostasis and oxidative stress. BMC Syst Biol 5(1):51

Abstract: ABSTRACT: BACKGROUND: In aerobically grown cells, iron homeostasis and oxidative stress are tightly linked processes implicated in a growing number of diseases. The deregulation of iron homeostasis due to gene defects or environmental stresses leads to a wide range of diseases with consequences for cellular metabolism that remain poorly understood. The modelling of iron homeostasis in relation to the main features of metabolism, energy production and oxidative stress may provide new clues to the ways in which changes in biological processes in a normal cell lead to disease. RESULTS: Using a methodology based on probabilistic Boolean modelling, we constructed the first model of yeast iron homeostasis including oxygen-related reactions in the frame of central metabolism. The resulting model of 642 elements and 1007 reactions was validated by comparing simulations with a large body of experimental results (147 phenotypes and 11 metabolic flux experiments). We removed every gene, thus generating in silico mutants. The simulations of the different mutants gave rise to a remarkably accurate qualitative description of most of the experimental phenotype (overall consistency > 91.5%). A second validation involved analysing the anaerobiosis to aerobiosis transition. Therefore, we compared the simulations of our model with different levels of oxygen to experimental metabolic flux data. The simulations reproducted accurately ten out of the eleven metabolic fluxes. We show here that our probabilistic Boolean modelling strategy provides a useful description of the dynamics of a complex biological system. A clustering analysis of the simulations of all in silico mutations led to the identification of clear phenotypic profiles, thus providing new insights into some metabolic response to stress conditions. Finally, the model was also used to explore several new hypothesis in order to better understand some unexpected phenotypes in given mutants. CONCLUSIONS: All these results show that this model, and the underlying modelling strategy, are powerful tools for improving our understanding of complex biological problems.

Status: Epub ahead of print Type: Journal Article PubMed ID: 21489274

Topics addressed in this paper

Number of different genes curated to this paper: 179

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Topics Topics not linked to Genes Genes linked to topics (#1 - 10 )
AAC1 AAT1 ACH1 ACO1 ACS1 ADH1 ADH2 ADK1 ADK2 ADO1
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Cell Growth and Metabolism yg ball
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Omics yg ball
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Topics Genes linked to topics (#11 - 20 )
AFT1 AFT2 ALD2 ALT1 ARH1 ASN1 ASP1 ATM1 ATX1 BUD16
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Topics Genes linked to topics (#21 - 30 )
CAT2 CCC1 CCC2 CCP1 CDC19 CFD1 CIT1 CIT2 COR1 COX2
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Topics Genes linked to topics (#31 - 40 )
COX20 COX5A COX5B CRC1 CTA1 CTP1 CTR1 CTR2 CTT1 CYC1
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Topics Genes linked to topics (#41 - 50 )
CYC3 CYC7 CYS3 CYS4 CYT1 CYT2 DAL1 DAL2 DAL3 DAL4
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Topics Genes linked to topics (#51 - 60 )
DIC1 DUR3 ENO1 ENO2 FAA2 FBA1 FBP1 FET3 FET4 FET5
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Topics Genes linked to topics (#61 - 70 )
FOX2 FRE1 FTH1 FTR1 FUM1 GDH1 GGC1 GLN1 GLR1 GLT1
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Topics Genes linked to topics (#71 - 80 )
GPM1 GPX1 GRX3 GSH1 GSH2 HEM1 HEM12 HEM13 HEM14 HEM15
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Topics Genes linked to topics (#81 - 90 )
HEM2 HEM3 HEM4 HXK1 ICL1 IDH1 IDH2 IDP2 ISA1 ISU1
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Topics Genes linked to topics (#91 - 100 )
KGD1 KGD2 LSC1 LSC2 MAC1 MAE1 MDH1 MDH3 MET1 MET14
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Topics Genes linked to topics (#101 - 110 )
MET16 MET2 MET22 MET3 MET5 MET6 MET8 MHT1 MIR1 MLS1
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Topics Genes linked to topics (#111 - 120 )
MSN5 NAR1 NBP35 NDE1 NDI1 NFS1 OAC1 ODC1 OSM1 PCK1
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Topics Genes linked to topics (#121 - 130 )
PDA1 PDC1 PDX3 PEP4 PFK1 PFK2 PGI1 PGK1 PHO12 PHO2
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Topics Genes linked to topics (#131 - 140 )
PHO3 PHO4 PHO80 PHO81 PHO84 PHO85 PHO89 PHO91 PIC2 POS5
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Topics Genes linked to topics (#141 - 150 )
POT1 POX1 PPN1 PSE1 PYC1 QCR10 QCR2 QCR6 QCR7 QCR8
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Other Features blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball

Topics Genes linked to topics (#151 - 160 )
QCR9 RIP1 ROX1 SAH1 SAL1 SAM1 SDH1 SDH2 SDH3 SDH4
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Topics Genes linked to topics (#161 - 170 )
SFC1 SMF3 SOD1 SOD2 SSQ1 STR2 STR3 SUL1 TDH1 TPI1
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Topics Genes linked to topics (#171 - 179 )
TPN1 UTR1 YAT2 YFH1 YIA6 YNK1 ZAP1 ZRT1 ZWF1
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