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Published on: August 4, 2019
PP2A phosphatase activity is required for stress and Tor kinase regulation of yeast stress response factor Msn2p
Arti Santhanam1, Alan Hartley, Katrin Düvel
1Department of Microbiology and Molecular Genetics, UMDNJ-New Jersey Medical School, Newark, NJ 07101, USA.
Abstract:
In response to stress and nutrient starvation, the Saccharomyces cerevisiae transcription factor Msn2p accumulates in the nucleus and activates expression of a broad array of genes. Here, we analyze the role of the Tor (target of rapamycin) signaling pathway in mediating these responses. Inactivation of the Tor pathway component Tap42p using tap42(Ts) alleles causes a sustained nuclear localization similar to that after the addition of the Tor kinase inhibitor rapamycin. Effects of Tap42p inactivation and rapamycin addition could be suppressed by deletion of TIP41, which encodes a Tap42p-interacting protein. These results support the notion that rapamycin affects Msn2p by inactivating Tap42p function. Tap42p interacts with the catalytic subunit of PP2A (protein phosphatase 2A) and PP2A-like phosphatases. Deletion of either the catalytic or regulatory subunit that forms the PP2A phosphatase complex prevents nuclear accumulation of Msn2p in the tap42(Ts) strain and in wild-type strains treated with rapamycin. These results suggest that Tap42p is an inhibitor of PP2A phosphatase, which in turn inhibits nuclear export of Msn2p. Interestingly, PP2A function is also required for nuclear accumulation of Msn2p in response to stresses, such as heat and osmotic shock, as well as nitrogen (but not glucose) starvation. Thus, PP2A and the Tor kinase pathway transduce stress and nitrogen starvation signals to Msn2p. Finally, Msn2p localization is unaffected by conditional loss of 14-3-3 protein function, ruling out the possibility that 14-3-3 proteins act as a scaffold to sequester Msn2p in the cytoplasm.
Insights
The Tor signaling pathway regulates Msn2p nuclear localization via Tap42p and protein phosphatase 2A (PP2A). PP2A mediates stress and starvation responses by controlling Msn2p nuclear export.
Area of Science:
- Cellular signaling
- Molecular biology
- Yeast genetics
Background:
- Msn2p is a transcription factor in Saccharomyces cerevisiae that regulates gene expression in response to stress and nutrient starvation.
- The Tor (target of rapamycin) signaling pathway is a key regulator of cellular growth and metabolism.
Purpose of the Study:
- To investigate the role of the Tor signaling pathway in mediating Msn2p nuclear localization and gene expression.
- To elucidate the molecular mechanism by which Tor signaling affects Msn2p localization.
Main Methods:
- Utilized tap42(Ts) alleles to inactivate the Tor pathway component Tap42p.
- Administered rapamycin, a Tor kinase inhibitor.
- Generated deletion mutants for TIP41 and protein phosphatase 2A (PP2A) subunits.
- Assessed Msn2p localization using microscopy in response to various stresses and nutrient conditions.
Main Results:
- Inactivation of Tap42p or rapamycin treatment led to sustained nuclear localization of Msn2p.
- Deletion of TIP41 suppressed the effects of Tap42p inactivation and rapamycin.
- Disruption of PP2A complex formation abolished Msn2p nuclear accumulation under both Tor inhibition and stress conditions.
- PP2A function was essential for Msn2p nuclear accumulation in response to heat shock, osmotic shock, and nitrogen starvation.
Conclusions:
- Tap42p acts as an inhibitor of PP2A, which in turn regulates Msn2p nuclear export.
- The Tor kinase pathway and PP2A are critical components in transducing stress and nitrogen starvation signals to Msn2p.
- 14-3-3 proteins do not function as cytoplasmic sequestering factors for Msn2p.
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