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Vachova L, et al.  (2004) Sok2p transcription factor is involved in adaptive program relevant for long term survival of Saccharomyces cerevisiae colonies. J Biol Chem 279(36):37973-81

Abstract: Volatile ammonia functions as a long range alarm signal important for the transition of yeast colonies to their adaptive alkali developmental phase and for their consequent long term survival. Cells of aged Saccharomyces cerevisiae sok2 colonies deleted in the gene for Sok2p transcription factor are not able to release a sufficient amount of ammonia out of the cells, they are more fragile than cells of wild type colonies, and they exhibit a survival defect. Genome-wide analysis on gene expression differences between sok2 and WT colonies revealed that sok2 colonies are not able to switch on the genes of adaptive metabolisms effectively and display unbalanced expression and activity of various enzymes involved in cell protection against oxidative damage. Impaired amino acid metabolism and insufficient activation of genes for putative ammonium exporters Ato and of those for some other membrane transporters may be responsible for observed defects in ammonia production. Thus, Sok2p appears to be an important regulator of S. cerevisiae colony development. Gene expression differences caused by its absence in colonies differ from those described previously in liquid cultures, which suggests a pleiotropic effect of Sok2p under different conditions.

Status: Published Type: Journal Article PubMed ID: 15229222

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Number of different genes curated to this paper: 47

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ADH1 ADH2 ADY2 ARG1 ARG3 ARG4 ATO2 ATO3 BAG7 CAT2
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HIS4 HOR2 ICL1 ICL2 IDP3 ILV6 JEN1 LEU4 LYS4 MDH3
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Topics Genes linked to topics (#41 - 47 )
RGS2 SOK2 SPS19 SUL1 TOS3 TPO2 YER130C
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