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Reference - PMID:20829365 - Pma1, a P-type proton ATPase, is a determinant of chronological life span in fission yeast.

Reference summary

PubMed ID
PMID:20829365
Title
Pma1, a P-type proton ATPase, is a determinant of chronological life span in fission yeast.
Authors
Ito H, Oshiro T, Fujita Y, Kubota S, Naito C, Ohtsuka H, Murakami H, Aiba H
Citation
J Biol Chem 2010 Nov 05;285(45):34616-20
Publication year
2010
Abstract
Chronological life span is defined by how long a cell can survive in a non-dividing state. In yeast, it is measured by viability after entry into stationary phase. To date, some factors affecting chronological life span have been identified; however, the molecular details of how these factors regulate chronological life span have not yet been elucidated clearly. Because life span is a complicated phenomenon and is supposedly regulated by many factors, it is necessary to identify new factors affecting chronological life span to understand life span regulation. To this end, we have screened for long-lived mutants and identified Pma1, an essential P-type proton ATPase, as one of the determinants of chronological life span. We show that partial loss of Pma1 activity not only by mutations but also by treatment with the Pma1 inhibitory chemical vanadate resulted in the long-lived phenotype in Schizosaccharomyces pombe. These findings suggest a novel way to manipulate chronological life span by modulating Pma1 as a molecular target.

Annotation

GO molecular function

GO:0008553 - P-type proton-exporting transporter activity

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Single locus phenotype

FYPO:0001168 - decreased ATPase activity

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FYPO:0004874 - decreased glucose consumption

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FYPO:0001890 - increased RNA level

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FYPO:0001309 - increased viability in stationary phase

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FYPO:0001158 - normal cellular pH

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FYPO:0007098 - normal growth on vanadate

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FYPO:0004083 - normal protein level

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FYPO:0000840 - normal RNA level

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FYPO:0001420 - normal vegetative cell population growth rate

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FYPO:0001103 - resistance to hydrogen peroxide

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