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Reference - PMID:15870269 - Response of fission yeast to toxic cations involves cooperative action of the stress-activated protein kinase Spc1/Sty1 and the Hal4 protein kinase.

Reference summary

PubMed ID
PMID:15870269
Title
Response of fission yeast to toxic cations involves cooperative action of the stress-activated protein kinase Spc1/Sty1 and the Hal4 protein kinase.
Authors
Wang LY, Shimada K, Morishita M, Shiozaki K
Citation
Mol Cell Biol 2005 May;25(10):3945-55
Publication year
2005
Abstract
Stress-activated protein kinases (SAPKs), members of a mitogen-activated protein kinase (MAPK) subfamily, are highly conserved among eukaryotes. Studies of yeasts demonstrated that SAPKs play pivotal roles in survival responses to high osmolarity, oxidative stress, and heat shock. Here we report a novel physiological role of the fission yeast Spc1 SAPK in cellular resistance to certain cations, such as Na(+), Li(+), and Ca(2+). Strains lacking Spc1 or its activator, Wis1 MAPK kinase, are hypersensitive to these cations. Spc1 positively regulates expression of sod2(+) encoding a Na(+)/H(+) antiporter through Atf1 and other transcription factors. In addition, we have identified a novel Spc1-interacting protein, Hal4, which is highly homologous to the budding yeast Sat4/Hal4 protein kinase. Like its budding yeast counterpart, the fission yeast Hal4 kinase is essential for cellular resistance to Na(+), Li(+), and Ca(2+). The hal4-null phenotype is complemented by overexpression of the Trk1 potassium transporter or increased K(+) in the growth medium, suggesting that Hal4 promotes K(+) uptake, which consequently increases cellular resistance to other cations. Interestingly, the Spc1-Hal4 interaction appears to be required for cellular resistance to Ca(2+) but not Na(+) and Li(+). We propose that Spc1 SAPK and Hal4 kinase cooperatively function to protect cells from the toxic cations.

Annotation

GO biological process

GO:0030007 - intracellular potassium ion homeostasis

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GO molecular function

GO:0005515 - protein binding

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Multi-locus phenotype

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

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FYPO:0001991 - inviable after spore germination, without cell division

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FYPO:0002151 - inviable spore

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FYPO:0002061 - inviable vegetative cell population

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FYPO:0001037 - normal growth during cellular response to salt stress

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FYPO:0001164 - normal growth on glucose carbon source

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FYPO:0000852 - resistance to salt stress

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FYPO:0000271 - sensitive to salt stress

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FYPO:0002060 - viable vegetative cell population

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Single locus phenotype

FYPO:0001117 - decreased RNA level during vegetative growth

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FYPO:0000825 - increased RNA level during vegetative growth

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FYPO:0001164 - normal growth on glucose carbon source

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FYPO:0001820 - normal growth on lithium

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FYPO:0000852 - resistance to salt stress

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FYPO:0000098 - sensitive to calcium

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FYPO:0001719 - sensitive to lithium

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FYPO:0006218 - sensitive to potassium ion starvation

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FYPO:0000271 - sensitive to salt stress

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FYPO:0005889 - sensitive to sodium chloride

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