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Zhang W, et al.  (2003) Microarray analyses of the metabolic responses of Saccharomyces cerevisiae to organic solvent dimethyl sulfoxide. J Ind Microbiol Biotechnol 30(1):57-69

Abstract: The toxic effects that organic solvents have on whole cells are important drawbacks in the application of these solvents in the production of fine chemicals by whole-cell stereoselective biotransformations. Although early studies found that organic solvents mainly destroyed the integrity of cell membranes by accumulating in the lipid bilayer of plasma membranes, the cellular metabolic responses to the presence of an organic solvent remain unclear. With the rapid development of genomics, it is possible to study cellular metabolism under perturbed conditions at the genome level. In this paper, the global gene expression profiles of Saccharomyces cerevisiae BY4743 grown in media with a high concentration of the organic solvent dimethyl sulfoxide (DMSO) were determined by microarray analysis of ~6,200 yeast open reading frames (ORFs). From cells grown in SD minimal medium containing 1.0% (v/v) DMSO, changes in transcript abundance greater than or equal to 2.5-fold were classified. Genomic analyses showed that 1,338 genes were significantly regulated by the presence of DMSO in yeast. Among them, only 400 genes were previously found to be responsive to general environmental stresses, such as temperature shock, amino acid starvation, nitrogen source depletion, and progression into stationary phase. The DMSO-responsive genes were involved in a variety of cellular functions, including carbohydrate, amino acid and lipid metabolism, cellular stress responses, and energy metabolism. Most of the genes in the lipid biosynthetic pathways were down-regulated by DMSO treatment, whereas genes involved in amino acid biosynthesis were mostly up-regulated. The results demonstrate that the application of microarray technology allows better interpretation of metabolic responses, and the information obtained will be useful for the construction of engineered yeast strains with better tolerance of organic solvents.

Status: Published Type: Journal Article PubMed ID: 12545388

Topics addressed in this paper

Number of different genes curated to this paper: 151

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Topics Topics not linked to Genes Genes linked to topics (#1 - 10 )
AAH1 ABP140 ACS2 ADE1 ADE12 ADE17 ADE4 ADE8 ADH2 ADH4
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Genomic expression study yg ball
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Topics Genes linked to topics (#11 - 20 )
ADH5 ADK1 ADO1 ALD3 ALD4 APA2 APT1 APT2 ARG1 ARG3
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Topics Genes linked to topics (#21 - 30 )
ARG4 ARG8 ARL1 ARO1 ARO3 ATP12 ATP15 ATP19 BAT2 CAP2
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Topics Genes linked to topics (#31 - 40 )
CCT2 CCT3 CCT4 CCT5 CCT7 CDC21 CIT1 CIT2 CIT3 COR1
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Topics Genes linked to topics (#41 - 50 )
COX18 COX8 COX9 CPA1 CPA2 CYB2 DAL3 DAL5 DAL7 ENO1
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Topics Genes linked to topics (#51 - 60 )
ENO2 EPT1 ERG10 ERG20 ERG5 ERG6 ERG7 ERG8 ERR3 FAS1
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Topics Genes linked to topics (#61 - 70 )
FAS2 FBA1 GCV1 GCV2 GGC1 GND2 GPM3 GPR1 GUK1 HIS1
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Topics Genes linked to topics (#71 - 80 )
HIS4 HIS5 HOM2 HOM3 HXK2 ICL1 IDP1 IDP2 ILV2 IMD1
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Topics Genes linked to topics (#81 - 90 )
IMD2 IMD4 ISA1 KAR9 LCB1 LEU4 MAE1 MAM33 MBA1 MCR1
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Topics Genes linked to topics (#91 - 100 )
MEF1 MEP2 MET14 MET2 MET3 MGM101 MLS1 MRPL17 NOG1 NQM1
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Topics Genes linked to topics (#101 - 110 )
OLI1 OXA1 PDC6 PDE1 PET122 PET9 PFK1 PFK26 PGM2 PHO88
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Topics Genes linked to topics (#111 - 120 )
PKH2 PPA2 PPZ1 PRS1 PYC1 RHO5 RNR1 ROM1 RPE1 RSM22
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Topics Genes linked to topics (#121 - 130 )
RSM23 SCS2 SER1 SHO1 SNF4 SOK1 SPT7 SSK22 STR2 SUL1
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Topics Genes linked to topics (#131 - 140 )
TAL1 TCP1 TDH2 TDH3 TKL2 TPM2 TRP3 TRP4 TSC10 TUB1
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Topics Genes linked to topics (#141 - 150 )
TUB2 URA1 URA10 URA5 URA7 WSC2 YAH1 YGR054W YMR1 YPC1
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Topics Genes linked to topics (#151 )
YPK2
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