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Status |
Public on Dec 14, 2020 |
Title |
Coordinated control of adiposity and growth by antiāanabolic kinase ERK7 |
Organism |
Drosophila melanogaster |
Experiment type |
Expression profiling by high throughput sequencing
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Summary |
Nutrient availability influences animal growth and metabolism. How starvation inhibits anabolic functions in vivo remains insufficiently understood. Here we establish an atypical MAP kinase ERK7 as an inhibitor of growth and lipid anabolism with an essential role in the physiological adaptation to starvation stress. Drosophila null mutants of ERK7 display accelerated growth rate and elevated triacylglycerol (TAG) stores on rich diet. ERK7 inhibits TAG storage in the Drosophila fat body by negatively regulating the expression of the Gli-similar transcription factor Sugarbabe. While displaying growth advantage on rich diet, ERK7 mutants fail to cease their growth during starvation and are consequently starvation sensitive. ERK7 modulates the majority of the starvation-induced gene expression response in a genomewide setting, influencing, for example, genes involved in insulin signaling and lipid metabolism. In conclusion, ERK7 regulates peripheral nutrient sensing to control animal growth and lipid metabolism with respect to nutrient availability.
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Overall design |
Control and ERK7 mutant flies starved and fed
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Web link |
https://pubmed.ncbi.nlm.nih.gov/33369866/
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Contributor(s) |
Kokki K, Hasygar K, Hietakangas V |
Citation(s) |
33369866 |
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Submission date |
Dec 16, 2018 |
Last update date |
Jan 21, 2021 |
Contact name |
Krista Kokki |
Organization name |
University of Helsinki
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Department |
Department of Biosciences (Genetics)
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Lab |
Hietakangas lab
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Street address |
Viikinkaari 9, Biocenter 1, Institute of Biotechnology P.O.Box. 56
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City |
Helsinki |
ZIP/Postal code |
00014 |
Country |
Finland |
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Platforms (1) |
GPL19132 |
Illumina NextSeq 500 (Drosophila melanogaster) |
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Samples (16)
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Relations |
BioProject |
PRJNA510246 |
SRA |
SRP173550 |