TY - JOUR
T1 - Transcription factor Stb5p is essential for acetaldehyde tolerance in Saccharomyces cerevisiae
AU - Matsufuji, Yoshimi
AU - Nakagawa, Tomoyuki
AU - Fujimura, Shuki
AU - Tani, Akio
AU - Nakagawa, Junichi
PY - 2010/10/1
Y1 - 2010/10/1
N2 - Transcription factor Stb5p, previously known as one of the multidrug resistance gene regulators in Saccharomyces cerevisiae, was shown here to play an essential role in acetaldehyde tolerance. A mutant strain, δstb5 exhibited increased acetaldehyde sensitivity, and failed to induce genes such as GND1, TKL1 and TAL1 involved in the pentose phosphate pathway (PPP) upon acetaldehyde stress. Using this strain it was revealed that Stb5p acts as a repressor for PGI1 encoding glucose-6-phosphate isomerase under acetaldehyde stress. In reverse, over-expression of Stb5p reinforced acetaldehyde tolerance to the yeast. Furthermore, various deletion mutants of the genes involved in glycolysis showed increased acetaldehyde tolerance compared to the wild-type strain. From these results, it was suggested that Stb5p participates in acetaldehyde tolerance by regulating expression of the PPP genes and PGI1, and that down-regulation of glycolytic pathway may lead to vitalization of PPP and to increased acetaldehyde tolerance.
AB - Transcription factor Stb5p, previously known as one of the multidrug resistance gene regulators in Saccharomyces cerevisiae, was shown here to play an essential role in acetaldehyde tolerance. A mutant strain, δstb5 exhibited increased acetaldehyde sensitivity, and failed to induce genes such as GND1, TKL1 and TAL1 involved in the pentose phosphate pathway (PPP) upon acetaldehyde stress. Using this strain it was revealed that Stb5p acts as a repressor for PGI1 encoding glucose-6-phosphate isomerase under acetaldehyde stress. In reverse, over-expression of Stb5p reinforced acetaldehyde tolerance to the yeast. Furthermore, various deletion mutants of the genes involved in glycolysis showed increased acetaldehyde tolerance compared to the wild-type strain. From these results, it was suggested that Stb5p participates in acetaldehyde tolerance by regulating expression of the PPP genes and PGI1, and that down-regulation of glycolytic pathway may lead to vitalization of PPP and to increased acetaldehyde tolerance.
KW - Glycolysis
KW - Pentose phosphate pathway
KW - STB5, Acetaldehyde tolerance
KW - Saccharomyces cerevisiae
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U2 - 10.1002/jobm.200900391
DO - 10.1002/jobm.200900391
M3 - Article
C2 - 20806246
AN - SCOPUS:77958587281
SN - 0233-111X
VL - 50
SP - 494
EP - 498
JO - Journal of basic microbiology
JF - Journal of basic microbiology
IS - 5
ER -