β-adrenergic induction of lipolysis in hepatocytes is inhibited by ethanol exposure

  1. Mark A. McNiven1*
  1. 1 Mayo Clinic, United States;
  2. 2 University of Nebraska Medical Center, United States;
  3. 3 Nebraska Western Iowa Health Care System, United States
  1. * Corresponding author; email: mmcniven{at}mayo.edu
  1. Author contributions: M. B. S., K. R., S. W., and R.S contributed to conception, design, acquisition, analysis, and interpretation of data. M.B.S and M.A.M wrote the manuscript, and all authors reviewed the results and approved the final version.

Abstract

In liver steatosis i.e., fatty liver), hepatocytes accumulate many large neutral lipid-storage organelles known as lipid droplets (LDs). LDs are important in the maintenance of energy homeostasis, but the signaling mechanisms that stimulate LD metabolism in hepatocytes are poorly defined. In adipocytes, catecholamines target the β-adrenergic (β-AR)/cAMP pathway to activate cytosolic lipases and induce their recruitment to the LD surface. Therefore, the goal of this study was to determine whether hepatocytes, like adipocytes, also undergo cAMP-mediated lipolysis in response to β-AR stimulation. Using primary rat hepatocytes and human hepatoma cells, we found that treatment with the β-AR agent isoproterenol caused substantial LD loss via activation of cytosolic lipases adipose triglyceride lipase (ATGL) and hormone-sensitive lipase (HSL). β-adrenergic stimulation rapidly activated cAMP-dependent protein kinase (PKA), which led to the phosphorylation of ATGL and HSL and their recruitment to the LD surface. To test whether this β-AR-dependent lipolysis pathway was altered in a model of alcoholic fatty liver, primary hepatocytes from rats fed a 6-week ethanol (EtOH)-containing Lieber-DeCarli diet were treated with cAMP agonists. Compared with controls, EtOH-exposed hepatocytes showed a drastic inhibition in β-AR/cAMP-induced LD breakdown and the phosphorylation of PKA substrates, including HSL. This observation was supported in VA-13 cells, an EtOH-metabolizing human hepatoma cell line, which displayed marked defects in both PKA activation and isoproterenol-induced ATGL translocation to the LD periphery. In summary, these findings suggest that β-AR stimulation mobilizes cytosolic lipases for LD breakdown in hepatocytes, and perturbation of this pathway could be a major consequence of chronic EtOH insult leading to fatty liver.

  • Received January 19, 2017.
  • Accepted May 17, 2017.

This Article

  1. jbc.M117.777748.
  1. Supplemental Data
  2. All Versions of this Article:
    1. M117.777748v1
    2. 292/28/11815 (most recent)

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