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Reference - PMID:20634885 - TOR and PKA pathways synergize at the level of the Ste11 transcription factor to prevent mating and meiosis in fission yeast.

Reference summary

PubMed ID
PMID:20634885
Title
TOR and PKA pathways synergize at the level of the Ste11 transcription factor to prevent mating and meiosis in fission yeast.
Authors
Valbuena N, Moreno S
Citation
PLoS One 2010 Jul 09;5(7):e11514
Publication year
2010
Abstract
In the fission yeast Schizosaccharomyces pombe, the TOR (target of rapamycin) and PKA (protein kinase A) signaling transduction pathways regulate the expression of genes required for cell growth and sexual differentiation in response to the nutritional environment. Inhibition of Tor2 signaling results in the induction of genes involved in sexual differentiation, and the cells undergo mating and meiosis, even under good nutritional conditions. The same phenotype is observed in mutants in which the PKA pathway is inactive. By contrast, Tor2 overexpression or mutations that hyperactivate PKA signaling impair sexual differentiation, even under poor nutritional conditions. Accordingly, a very important question is to understand the molecular mechanism by which these two pathways coordinately regulate gene expression in response to nutrients. Here we demonstrate that TOR and PKA pathways operate coordinately to negatively regulate sexual differentiation by inhibiting the nuclear accumulation of the Ste11 transcription factor. However, the Tor2 pathway is unable to block the nuclear localization of Ste11 under good nutritional conditions when the PKA pathway is inactive. Using microarray analyses, we found that both pathways inhibit sexual differentiation by blocking ste11-dependent gene expression. We conclude that both the PKA and the TOR pathways inhibit Ste11 nuclear accumulation to repress Ste11-dependent gene expression. However, the PKA pathway plays a quantitatively more important role than the TOR pathway in this process.

Annotation

GO biological process

GO:0031138 - negative regulation of conjugation with cellular fusion

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GO cellular component

GO:0005737 - cytoplasm

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GO:0005634 - nucleus

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Multi-locus phenotype

FYPO:0001430 - abnormal mitotic cell cycle arrest with unreplicated DNA

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FYPO:0001043 - increased mating efficiency

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FYPO:0001219 - increased protein level during cellular response to nitrogen starvation

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FYPO:0001890 - increased RNA level

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FYPO:0002020 - increased RNA level during nitrogen starvation

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FYPO:0000411 - normal mitotic cell cycle

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Single locus phenotype

FYPO:0001430 - abnormal mitotic cell cycle arrest with unreplicated DNA

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FYPO:0003450 - abolished protein localization to nucleus

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FYPO:0004461 - decreased level of regulation of sexual differentiation gene mRNA during nitrogen starvation

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FYPO:0000708 - decreased mating efficiency

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FYPO:0001283 - decreased protein level during cellular response to nitrogen starvation

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FYPO:0001152 - decreased RNA level during nitrogen starvation

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FYPO:0001043 - increased mating efficiency

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FYPO:0001219 - increased protein level during cellular response to nitrogen starvation

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FYPO:0004456 - increased protein localization to nucleus

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FYPO:0001890 - increased RNA level

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FYPO:0002020 - increased RNA level during nitrogen starvation

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