A phosphoproteomic approach reveals that PKD3 controls PKA-mediated glucose and tyrosine metabolism

Author:

Loza-Valdes Angel12ORCID,Mayer Alexander E1ORCID,Kassouf Toufic2ORCID,Trujillo-Viera Jonathan1,Schmitz Werner3ORCID,Dziaczkowski Filip2ORCID,Leitges Michael4,Schlosser Andreas1,Sumara Grzegorz12ORCID

Affiliation:

1. Rudolf Virchow Center, Center for Integrative and Translational Bioimaging, University of Würzburg, Würzburg, Germany

2. Nencki Institute of Experimental Biology, Polish Academy of Sciences, Warsaw, Poland

3. Theodor Boveri Institute, Biocenter, University of Würzburg, Würzburg, Germany

4. Tier 1, Canada Research Chair in Cell Signaling and Translational Medicine, Division of BioMedical Sciences/Faculty of Medicine, Craig L Dobbin Genetics Research Centre, Memorial University of Newfoundland, Health Science Centre, St. Johns, Canada

Abstract

Members of the protein kinase D (PKD) family (PKD1, 2, and 3) integrate hormonal and nutritional inputs to regulate complex cellular metabolism. Despite the fact that a number of functions have been annotated to particular PKDs, their molecular targets are relatively poorly explored. PKD3 promotes insulin sensitivity and suppresses lipogenesis in the liver of animals fed a high-fat diet. However, its substrates are largely unknown. Here we applied proteomic approaches to determine PKD3 targets. We identified more than 300 putative targets of PKD3. Furthermore, biochemical analysis revealed that PKD3 regulates cAMP-dependent PKA activity, a master regulator of the hepatic response to glucagon and fasting. PKA regulates glucose, lipid, and amino acid metabolism in the liver, by targeting key enzymes in the respective processes. Among them the PKA targets phenylalanine hydroxylase (PAH) catalyzes the conversion of phenylalanine to tyrosine. Consistently, we showed that PKD3 is activated by glucagon and promotes glucose and tyrosine levels in hepatocytes. Therefore, our data indicate that PKD3 might play a role in the hepatic response to glucagon.

Funder

European Research Council Starting Grant SicMetabol

Emmy Noether Grant

EMBO Installation Grant from European Molecular Biology Organization

Dioscuri Centre of Scientific Excellence. An Initiative from Max Planck Society (MPG) and the National Science Centre

Publisher

Life Science Alliance, LLC

Subject

Health, Toxicology and Mutagenesis,Plant Science,Biochemistry, Genetics and Molecular Biology (miscellaneous),Ecology

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