Unknown

Dataset Information

0

Mitogen-activated protein kinases, Fus3 and Kss1, regulate chronological lifespan in yeast.


ABSTRACT: Using a systems-based approach, we have identified several genes not previously evaluated for a role(s) in chronological aging. Here, we have thoroughly investigated the chronological lifespan (CLS) of three of these genes (FUS3, KSS1 and HOG1) and their protein products, each of which have well-defined cell signaling roles in young cells. The importance of FUS3 and KSS1 in CLS are largely unknown and analyzed here for the first time. Using both qualitative and quantitative CLS assays, we show that deletion of any of the three MAPK's increases yeast lifespan. Furthermore, combined deletion of any MAPK and TOR1, most prominently fus3?/tor1?, produces a two-stage CLS response ending in lifespan increase greater than that of tor1?. Similar effects are achieved upon endogenous expression of a non-activatable form of Fus3. We speculate that the autophagy-promoting role of FUS3, which is inherently antagonistic to the role of TOR1, may in part be responsible for the differential aging phenotype of fus3?/tor1?. Consistent with this notion we show that nitrogen starvation, which promotes autophagy by deactivating Tor1, results in decreased CLS if FUS3 is deleted. Taken together, these results reveal a previously unrealized effect of mating-specific MAPKs in the chronological lifespan of yeast.

SUBMITTER: Aluru M 

PROVIDER: S-EPMC5764394 | biostudies-literature | 2017 Dec

REPOSITORIES: biostudies-literature

altmetric image

Publications

Mitogen-activated protein kinases, Fus3 and Kss1, regulate chronological lifespan in yeast.

Aluru Maneesha M   McKinney Tori T   Venero Anne-Kathryn L AL   Choudhury Shilpa S   Torres Matthew M  

Aging 20171201 12


Using a systems-based approach, we have identified several genes not previously evaluated for a role(s) in chronological aging. Here, we have thoroughly investigated the chronological lifespan (CLS) of three of these genes (<i>FUS3</i>, <i>KSS1</i> and <i>HOG1</i>) and their protein products, each of which have well-defined cell signaling roles in young cells. The importance of <i>FUS3</i> and <i>KSS1</i> in CLS are largely unknown and analyzed here for the first time. Using both qualitative and  ...[more]

Similar Datasets

| S-EPMC2172336 | biostudies-literature
| S-EPMC2223071 | biostudies-literature
| S-EPMC4765092 | biostudies-literature
| S-EPMC1373668 | biostudies-literature
| S-EPMC1560367 | biostudies-literature
| S-EPMC3330201 | biostudies-literature
| S-EPMC3202601 | biostudies-literature