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Title:
Mutation of a putative AMPK phosphorylation site abolishes the repressor activity but not the nuclear targeting of the fungal glucose regulator CRE1 | Current Genetics
Description:
In filamentous ascomycetes, glucose repression is mediated by CRE1, a zinc-finger protein related to Mig1p from yeast. Five putative AMPK phosphorylation motifs identified in the glucose repressor from the phytopathogenic fungus Sclerotinia sclerotiorum were mutated in a GFP::CRE1 translational fusion. Complementation experiments in Aspergillus nidulans and fluorescence microscopy analyses showed that mutation of one site (Ser266) abolishes the repressor activity of the fusion protein but not its nuclear targeting, suggesting that an AMPK protein kinase may be involved in the function of the fungal glucose repressor.
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zinc-finger protein related article vautard-mey fungal glucose repressor month download article/chapter ampk protein kinase westfĂ€lische wilhelms-universitĂ€t mĂŒnster unitĂ© de microbiologie related subjects privacy choices/manage cookies full article pdf cre1 translational fusion de-repression european economic area mitotic spindle alignment france e-mail conditions privacy policy check access instant access accepting optional cookies fusion protein journal finder publish article log glucose repression article cite information fr tel fĂšvre glucose repressor privacy policy personal data glucose utilization books a cre1 optional cookies manage preferences d-48149 mĂŒnster subscription content similar content data protection essential cookies cookies skip institution subscribe journal publish repressor activity usage analysis social media varying standards nuclear targeting filamentous ascomycetes complementation experiments
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headline:Mutation of a putative AMPK phosphorylation site abolishes the repressor activity but not the nuclear targeting of the fungal glucose regulator CRE1
description: In filamentous ascomycetes, glucose repression is mediated by CRE1, a zinc-finger protein related to Mig1p from yeast. Five putative AMPK phosphorylation motifs identified in the glucose repressor from the phytopathogenic fungus Sclerotinia sclerotiorum were mutated in a GFP::CRE1 translational fusion. Complementation experiments in Aspergillus nidulans and fluorescence microscopy analyses showed that mutation of one site (Ser266) abolishes the repressor activity of the fusion protein but not its nuclear targeting, suggesting that an AMPK protein kinase may be involved in the function of the fungal glucose repressor.
datePublished:
dateModified:
pageStart:328
pageEnd:332
sameAs:https://doi.org/10.1007/s002940050535
keywords:
Key words CRE1
Zinc-finger protein
AMPK
Sclerotinia sclerotiorum
Microbial Genetics and Genomics
Microbiology
Biochemistry
general
Cell Biology
Plant Sciences
Proteomics
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headline:Mutation of a putative AMPK phosphorylation site abolishes the repressor activity but not the nuclear targeting of the fungal glucose regulator CRE1
description: In filamentous ascomycetes, glucose repression is mediated by CRE1, a zinc-finger protein related to Mig1p from yeast. Five putative AMPK phosphorylation motifs identified in the glucose repressor from the phytopathogenic fungus Sclerotinia sclerotiorum were mutated in a GFP::CRE1 translational fusion. Complementation experiments in Aspergillus nidulans and fluorescence microscopy analyses showed that mutation of one site (Ser266) abolishes the repressor activity of the fusion protein but not its nuclear targeting, suggesting that an AMPK protein kinase may be involved in the function of the fungal glucose repressor.
datePublished:
dateModified:
pageStart:328
pageEnd:332
sameAs:https://doi.org/10.1007/s002940050535
keywords:
Key words CRE1
Zinc-finger protein
AMPK
Sclerotinia sclerotiorum
Microbial Genetics and Genomics
Microbiology
Biochemistry
general
Cell Biology
Plant Sciences
Proteomics
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