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A phosphoglycolate phosphatase/AUM-dependent link between triacylglycerol turnover and epidermal growth factor signaling.

Biochim Biophys Acta Mol Cell Biol Lipids. 2018 Jun;1863(6):584-594. Epub 2018 Mar 07
Gabriela Segerer 1 , Daria Engelmann 1 , Alexandra Kaestner 1 , Martin Trötzmüller 2 , Harald Köfeler 2 , Christian Stigloher 3 , Christoph Thiele 4 , Elisabeth Jeanclos 1 , Antje Gohla 5
Gabriela Segerer 1 , Daria Engelmann 1 , Alexandra Kaestner 1 , Martin Trötzmüller 2 , Harald Köfeler 2 , Christian Stigloher 3 , Christoph Thiele 4 , Elisabeth Jeanclos 1 , Antje Gohla 5
+ et al

[No authors listed]

Author information
  • 1 Institute for Pharmacology and Toxicology, University of Würzburg, Versbacher Strasse 9, 97078 Würzburg, Germany.
  • 2 Lipidomics Research Center Graz, Center for Medical Research, Medical University Graz, Stiftingtalstrasse 24, 8010 Graz, Austria.
  • 3 Biocenter, Division of Electron Microscopy, University of Würzburg, Am Hubland, 97074 Würzburg, Germany.
  • 4 Life and Medical Sciences Institute, University of Bonn, Carl-Troll-Straße 31, 53115 Bonn, Germany.
  • 5 Institute for Pharmacology and Toxicology, University of Würzburg, Versbacher Strasse 9, 97078 Würzburg, Germany. Electronic address: antje.gohla@uni-wuerzburg.de.

摘要


Mammalian phosphoglycolate phosphatase (PGP, also known as AUM or glycerol-3-phosphate phosphatase) is a small molecule-directed phosphatase important for metabolite repair and lipid metabolism. Although PGP was first characterized as an enzyme involved in epidermal growth factor (EGF) signaling, PGP protein substrates have remained elusive. Here we show that PGP depletion facilitates fatty acid flux through the intracellular triacylglycerol/fatty acid cycle, and that phosphatidylinositol-4,5-bisphosphate (PIP2), produced in a side branch of this cycle, is critical for the impact of PGP activity on EGF-induced signaling. Loss of endogenous PGP expression amplified both EGF-induced EGF receptor autophosphorylation and Src-dependent tyrosine phosphorylation of phospholipase C-γ1 (PLCγ1). Furthermore, EGF enhanced the formation of circular dorsal ruffles in PGP-depleted cells via Src/PLCγ1/protein kinase C signaling to the cytoskeleton. Inhibition of adipose triglyceride lipase normalized the increased PIP2 content, reduced EGF-dependent PLCγ1 hyperphosphorylation, and decreased the elevated dorsal ruffle formation of PGP-depleted cells. Our data explain how PGP exerts control over EGF-induced cellular protein tyrosine phosphorylation, and reveal an unexpected influence of triacylglycerol turnover on growth factor signaling.

KEYWORDS: AUM, Circular dorsal ruffle, Epidermal growth factor receptor, Glycerol-3-phosphate phosphatase, Phosphoglycolate phosphatase, Triacylglycerol/fatty acid cycle