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  Stress-responsive FKBP51 regulates AKT2-AS160 signaling and metabolic function

Balsevich, G., Häusl, A. S., Meyer, C. W., Karamihalev, S., Feng, X., Pöhlmann, M., et al. (2017). Stress-responsive FKBP51 regulates AKT2-AS160 signaling and metabolic function. NATURE COMMUNICATIONS, 8: 1725. doi:10.1038/s41467-017-01783-y.

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 Creators:
Balsevich, Georgia1, Author           
Häusl, Alexander S.1, Author           
Meyer, Carola W.2, Author
Karamihalev, Stoyo1, Author           
Feng, Xixi3, Author           
Pöhlmann, Max1, Author           
Dournes, Carine1, Author           
Uribe-Marino, Andrés1, Author           
Santarelli, Sara1, Author           
Labermaier, Christiana1, Author           
Hafner, Kathrin3, Author           
Mao, Tianqi3, Author           
Breitsamer, Michaela2, Author
Theodoropoulou, Marily3, Author           
Namendorf, Christian3, Author           
Uhr, Manfred3, Author           
Páez-Pereda, Marcelo3, Author           
Winter, Gerhard2, Author
Hausch, Felix2, Author
Chen, Alon1, Author           
Tschoep, Matthias H.2, AuthorRein, Theo3, Author           Gassen, Nils Christian3, Author           Schmidt, Mathias V.1, Author            more..
Affiliations:
1Dept. Stress Neurobiology and Neurogenetics, Max Planck Institute of Psychiatry, Max Planck Society, ou_2035294              
2External Organizations, ou_persistent22              
3Dept. Translational Research in Psychiatry, Max Planck Institute of Psychiatry, Max Planck Society, ou_2035295              

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Free keywords: DIET-INDUCED OBESITY; SKELETAL-MUSCLE; GLUCOCORTICOID-RECEPTOR; GLUT4 TRANSLOCATION; IMMUNOPHILIN FKBP51; INSULIN-RESISTANCE; DIABETES-MELLITUS; GENE-EXPRESSION; ADIPOSE-TISSUE; MICE LACKINGScience & Technology - Other Topics;
 Abstract: The co-chaperone FKBP5 is a stress-responsive protein-regulating stress reactivity, and its genetic variants are associated with T2D related traits and other stress-related disorders. Here we show that FKBP51 plays a role in energy and glucose homeostasis. Fkbp5 knockout (51KO) mice are protected from high-fat diet-induced weight gain, show improved glucose tolerance and increased insulin signaling in skeletal muscle. Chronic treatment with a novel FKBP51 antagonist, SAFit2, recapitulates the effects of FKBP51 deletion on both body weight regulation and glucose tolerance. Using shorter SAFit2 treatment, we show that glucose tolerance improvement precedes the reduction in body weight. Mechanistically, we identify a novel association between FKBP51 and AS160, a substrate of AKT2 that is involved in glucose uptake. FKBP51 antagonism increases the phosphorylation of AS160, increases glucose transporter 4 expression at the plasma membrane, and ultimately enhances glucose uptake in skeletal myotubes. We propose FKBP51 as a mediator between stress and T2D development, and potential target for therapeutic approaches.

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Language(s): eng - English
 Dates: 2017
 Publication Status: Published online
 Pages: 12
 Publishing info: -
 Table of Contents: -
 Rev. Type: -
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Project name : GxE molmech
Grant ID : 281338
Funding program : Funding Programme 7 (FP7)
Funding organization : European Commission (EC)

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Title: NATURE COMMUNICATIONS
Source Genre: Journal
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Publ. Info: NATURE PUBLISHING GROUP
Pages: - Volume / Issue: 8 Sequence Number: 1725 Start / End Page: - Identifier: ISSN: 2041-1723