Epoxygenase Cyp2c44 Regulates Hepatic Lipid Metabolism and Insulin Signaling by Controlling FATP2 Localization and Activation of the DAG/PKCδ Axis

Author:

Ghoshal Kakali1,Luther James M.2,Pakala Suman B.3,Chetyrkin Sergei4,Falck John R.5,Zent Roy16,Wasserman David H.7,Pozzi Ambra167ORCID

Affiliation:

1. 1Division of Nephrology and Hypertension, Department of Medicine, Vanderbilt University School of Medicine, Nashville, TN

2. 2Division of Clinical Pharmacology, Department of Medicine, Vanderbilt University School of Medicine, Nashville, TN

3. 3Division of Infectious Diseases, Department of Medicine, Vanderbilt University School of Medicine, Nashville, TN

4. 4Mass Spectrometry Research Center, Vanderbilt University School of Medicine, Nashville, TN

5. 5UT Southwestern Medical Center, Dallas, TX

6. 6Department of Veterans Affairs, Nashville, Nashville, TN

7. 7Department of Molecular Physiology and Biophysics, Vanderbilt University School of Medicine, Nashville, TN

Abstract

Cytochrome P450 epoxygenase Cyp2c44, a murine epoxyeicosatrienoic acid (EET)-producing enzyme, promotes insulin sensitivity, and Cyp2c44−/− mice show hepatic insulin resistance. Because insulin resistance leads to hepatic lipid accumulation and hyperlipidemia, we hypothesized that Cyp2c44 regulates hepatic lipid metabolism. Standard chow diet (SCD)-fed male Cyp2c44−/− mice had significantly decreased EET levels and increased hepatic and plasma lipid levels compared with wild-type mice. We showed increased hepatic plasma membrane localization of the FA transporter 2 (FATP2) and total unsaturated fatty acids and diacylglycerol (DAG) levels. Cyp2c44−/− mice had impaired glucose tolerance and increased hepatic plasma membrane–associated PKCδ and phosphorylated IRS-1, two negative regulators of insulin signaling. Surprisingly, SCD and high-fat diet (HFD)-fed Cyp2c44−/− mice had similar glucose tolerance and hepatic plasma membrane PKCδ levels, suggesting that SCD-fed Cyp2c44−/− mice have reached their maximal glucose intolerance. Inhibition of PKCδ resulted in decreased IRS-1 serine phosphorylation and improved insulin-mediated signaling in Cyp2c44−/− hepatocytes. Finally, Cyp2c44−/− HFD-fed mice treated with the analog EET-A showed decreased hepatic plasma membrane FATP2 and PCKδ levels with improved glucose tolerance and insulin signaling. In conclusion, loss of Cyp2c44 with concomitant decreased EET levels leads to increased hepatic FATP2 plasma membrane localization, DAG accumulation, and PKCδ-mediated attenuation of insulin signaling. Thus, Cyp2c44 acts as a regulator of lipid metabolism by linking it to insulin signaling. Article Highlights

Funder

Department of Veterans Affairs

American Diabetes Association

Vanderbilt Equipment Grant

JRF Ortho

NIH

Publisher

American Diabetes Association

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