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Reference - PMID:28600551 - Epe1 contributes to activation of AMPK by promoting phosphorylation of AMPK alpha subunit, Ssp2.

Reference summary

PubMed ID
PMID:28600551
Title
Epe1 contributes to activation of AMPK by promoting phosphorylation of AMPK alpha subunit, Ssp2.
Authors
Chen Y, Hu X, Guo C, Yu Y, Lu H
Citation
Sci Rep 2017 Jun 09;7(1):3208
Publication year
2017
Abstract
AMP-activated protein kinase (AMPK) is a pivotal cellular energy sensor. It is activated by stresses that cause depletion of energy and initiates adaptive responses by regulating metabolism balance. AMPK forms αβγ heterotrimer. In fission yeast, activation of AMPK mainly depends on the phosphorylation of AMPKα subunit Ssp2 at Thr 189 by upstream kinase Ssp1. However, not much is known about the regulation of this process. In this study, we identified Epe1 as a novel positive regulator of AMPK. Epe1, a jmjC-domain-containing protein, is best-known as a negative regulator of heterochromatin spreading. Although the novel role of Epe1 in regulation of AMPK relies on predicted iron- and 2-oxyglutarate-binding residues inside jmjC domain, it seems to be irrelevant to inhibition of heterochromatin spreading. Epe1 is associated with Ssp2 directly and promotes phosphorylation of Ssp2 upon various environmental stresses, including low-glucose, high-sodium, high-pH and oxidative conditions. Similar to Epe1, Jmj1 and Msc1 also contribute to phosphorylation of Ssp2. Deletion of epe1 + impairs downstream events following phosphorylation of Ssp2, including nuclear translocation of Ssp2, sexual differentiation and inhibition of fatty acid synthesis. Our study reveals a novel way in which a jmjC-domain-containing protein regulates adaptive response by directly binding to a principal sensor.

Annotation

GO cellular component

GO:0005737 - cytoplasm

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GO:0005634 - nucleus

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Multi-locus phenotype

FYPO:0003743 - decreased cell population growth during glucose starvation

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Single locus phenotype

FYPO:0001424 - abolished protein localization to nucleus during vegetative growth

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FYPO:0006711 - abolished protein phosphorylation during cellular response to alkaline pH

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FYPO:0006232 - abolished protein phosphorylation during cellular response to hydrogen peroxide

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FYPO:0006709 - abolished protein phosphorylation during cellular response to salt stress

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FYPO:0006708 - abolished protein phosphorylation during glucose starvation

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FYPO:0003743 - decreased cell population growth during glucose starvation

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FYPO:0006712 - decreased cellular acetyl-CoA level

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FYPO:0000303 - decreased conjugation frequency

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FYPO:0001514 - decreased protein localization to nucleus during vegetative growth

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FYPO:0006710 - decreased protein phosphorylation during cellular response to alkaline pH

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FYPO:0002446 - decreased protein phosphorylation during cellular response to hydrogen peroxide

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FYPO:0005749 - decreased protein phosphorylation during glucose starvation

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FYPO:0001885 - decreased protein phosphorylation during salt stress

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FYPO:0000584 - decreased sporulation frequency

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FYPO:0006714 - increased cellular free fatty acid level

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FYPO:0006713 - increased cellular malonyl-CoA level

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FYPO:0004765 - normal cell population growth during glucose starvation

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FYPO:0001164 - normal growth on glucose carbon source

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FYPO:0000833 - normal protein level during vegetative growth

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FYPO:0003214 - normal protein phosphorylation during cellular response to glucose starvation

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FYPO:0000852 - resistance to salt stress

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FYPO:0005968 - resistance to sodium chloride

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FYPO:0001987 - sensitive to high pH

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