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Reference - PMID:14723709 - Pmr1, a P-type ATPase, and Pdt1, an Nramp homologue, cooperatively regulate cell morphogenesis in fission yeast: the importance of Mn2+ homeostasis.

Reference summary

PubMed ID
PMID:14723709
Title
Pmr1, a P-type ATPase, and Pdt1, an Nramp homologue, cooperatively regulate cell morphogenesis in fission yeast: the importance of Mn2+ homeostasis.
Authors
Maeda T, Sugiura R, Kita A, Saito M, Deng L, He Y, Yabin L, Fujita Y, Takegawa K, Shuntoh H, Kuno T
Citation
Genes Cells 2004 Jan;9(1):71-82
Publication year
2004
Abstract
Schizosaccharomyces pombe pmr1+ gene is homologous to Saccharomyces cerevisiae PMR1 gene, which encodes the P-type Ca2+/Mn2+-ATPase. Addition of Mn2+, as well as Ca2+, to the medium induced pmr1+ gene expression in a calcineurin-dependent manner. The pmr1 knockout (Deltapmr1) cells exhibited hypersensitivity to EGTA. A screen for high gene dosage-suppressors of the EGTA-hypersensitive phenotype of Deltapmr1 led to the identification of pdt1+ gene, which encodes an Nramp-related metal transporter. The Deltapmr1 cells showed round cell morphology. Although Deltapdt1 cells appeared normal in the regular medium, it showed round cell morphology similar to that of the Deltapmr1 cells when Mn2+ was removed from the medium. The removal of Mn2+ also exacerbated the round morphology of the Deltapmr1 cells. The Deltapmr1Deltapdt1 double mutants grew very slowly and showed extremely aberrant cell morphology with round, enlarged and depolarized shape. The addition of Mn2+, but not Ca2+, to the medium completely suppressed the morphological defects, while both Mn2+ and Ca2+ markedly improved the slow growth of the double mutants. These results suggest that Pmr1 and Pdt1 cooperatively regulate cell morphogenesis through the control of Mn2+ homeostasis, and that calcineurin functions as a Mn2+ sensor as well as a Mn2+ homeostasis regulator.

Annotation

GO biological process

GO:0070588 - calcium ion transmembrane transport

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GO:0030026 - intracellular manganese ion homeostasis

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GO:0071421 - manganese ion transmembrane transport

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GO molecular function

GO:0015410 - ABC-type manganese transporter activity

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Multi-locus phenotype

FYPO:0001407 - decreased cell population growth on glucose carbon source

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FYPO:0000539 - increased protein secretion during vegetative growth

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FYPO:0004512 - sensitive to EGTA

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FYPO:0000086 - sensitive to tacrolimus

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FYPO:0002402 - viable swollen vegetative cell with abnormal cell shape

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Qualitative gene expression

PomGeneEx:0000011 - RNA level increased

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Single locus phenotype

FYPO:0001407 - decreased cell population growth on glucose carbon source

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FYPO:0004477 - decreased RNA level during cellular response to calcium ion

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FYPO:0006786 - normal growth on manganese

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FYPO:0000098 - sensitive to calcium

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FYPO:0004512 - sensitive to EGTA

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FYPO:0006579 - sensitive to manganese

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FYPO:0002106 - viable stubby vegetative cell

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FYPO:0002177 - viable vegetative cell with normal cell morphology

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