[No authors listed]
The Protein kinase A and Sch9 regulates cell growth as well as lifespan in Saccharomyces cerevisiae. Maf1 is a RNA polymerase III (PolIII) inhibitor that tailors 5S rRNA and tRNA production in response to various environmental cues. Both and Sch9 have been shown to phosphorylate Maf1 in vitro at similar amino acids, suggesting a redundancy in Maf1 regulation. However, here we find that activating duanyu1529 by bcy1 deletion cannot replace Sch9 for Maf1 phosphorylation and cytoplasmic retention; instead, such modulation lowers Maf1 protein levels. Consistently, loss of MAF1 or constitutive duanyu1529 activity reverses the stress resistance and the extended lifespan of sch9Î cells. Overexpression of MAF1 partially rescues the extended lifespan of sch9Î in bcy1Îsch9Î mutant, suggesting that duanyu1529 suppresses sch9Î longevity at least partly through Maf1 abundance. Constitutive duanyu1529 activity also reverses the reduced tRNA synthesis and slow growth of sch9Î, which, however, is not attributed to Maf1 protein abundance. Therefore, regulation of lifespan and growth can be decoupled. Together, we reveal that lifespan regulation by duanyu1529 and Sch9 are mediated by Maf1 through distinct mechanisms.
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