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Chemical genetic screen identifies Gapex-5/GAPVD1 and STBD1 as novel AMPK substrates

Ducommun, Serge (författare)
Swiss Federal Institute of Technology
Deak, Maria (författare)
Swiss Federal Institute of Technology
Zeigerer, Anja (författare)
Helmholtz Zentrum München,University Hospital Heidelberg,German Center for Diabetes Research
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Göransson, Olga (författare)
Lund University,Lunds universitet,Proteinfosforylering,Forskargrupper vid Lunds universitet,Protein Phosphorylation,Lund University Research Groups
Seitz, Susanne (författare)
German Center for Diabetes Research,University Hospital Heidelberg,Helmholtz Zentrum München
Collodet, Caterina (författare)
Swiss Federal Institute of Technology
Madsen, Agnete B. (författare)
University of Copenhagen
Jensen, Thomas E. (författare)
University of Copenhagen
Viollet, Benoit (författare)
Paris Descartes University,Institut Cochin
Foretz, Marc (författare)
Institut Cochin,Paris Descartes University
Gut, Philipp (författare)
Swiss Federal Institute of Technology
Sumpton, David (författare)
Beatson Institute for Cancer Research
Sakamoto, Kei (författare)
Swiss Federal Institute of Technology
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 (creator_code:org_t)
Elsevier BV, 2019
2019
Engelska 13 s.
Ingår i: Cellular Signalling. - : Elsevier BV. - 0898-6568 .- 1873-3913. ; 57, s. 45-57
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
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  • AMP-activated protein kinase (AMPK) is a key regulator of cellular energy homeostasis, acting as a sensor of energy and nutrient status. As such, AMPK is considered a promising drug target for treatment of medical conditions particularly associated with metabolic dysfunctions. To better understand the downstream effectors and physiological consequences of AMPK activation, we have employed a chemical genetic screen in mouse primary hepatocytes in an attempt to identify novel AMPK targets. Treatment of hepatocytes with a potent and specific AMPK activator 991 resulted in identification of 65 proteins phosphorylated upon AMPK activation, which are involved in a variety of cellular processes such as lipid/glycogen metabolism, vesicle trafficking, and cytoskeleton organisation. Further characterisation and validation using mass spectrometry followed by immunoblotting analysis with phosphorylation site-specific antibodies identified AMPK-dependent phosphorylation of Gapex-5 (also known as GTPase-activating protein and VPS9 domain-containing protein 1 (GAPVD1)) on Ser902 in hepatocytes and starch-binding domain 1 (STBD1) on Ser175 in multiple cells/tissues. As new promising roles of AMPK as a key metabolic regulator continue to emerge, the substrates we identified could provide new mechanistic and therapeutic insights into AMPK-activating drugs in the liver.

Ämnesord

MEDICIN OCH HÄLSOVETENSKAP  -- Medicinska och farmaceutiska grundvetenskaper -- Cell- och molekylärbiologi (hsv//swe)
MEDICAL AND HEALTH SCIENCES  -- Basic Medicine -- Cell and Molecular Biology (hsv//eng)

Nyckelord

GTPase activating protein and VPS9 domains 1
Shokat
Starch-binding domain 1

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