Inhibition of ABCA1 Protein Expression and Cholesterol Efflux by TNF α in MLO-Y4 Osteocytes

Kent R Wehmeier1, William Kurban1, Chandrikha Chandrasekharan1

  • 1Division of Endocrinology, Diabetes and Metabolism, Department of Medicine, University of Florida College of Medicine, 653-1 West 8th Street, L14, Jacksonville, FL, 32209, USA.

Insights

Pro-inflammatory cytokines like TNF-α reduce cholesterol transporter ABCA1 levels in osteocytes, impacting bone health. This occurs via a p38 MAP kinase pathway, suggesting a link between inflammation, cholesterol, and osteoporosis.

Area of Science:

  • Cell Biology
  • Molecular Biology
  • Biochemistry

Background:

  • Hip fracture and myocardial infarction are major causes of morbidity and mortality.
  • Elevated cholesterol and pro-inflammatory cytokines are linked to bone loss and atherosclerosis.
  • Cholesterol transport abnormalities may contribute to osteoporosis.

Purpose of the Study:

  • To investigate the effects of TNF-α on cholesterol metabolism in osteocytes.
  • To examine the expression of cholesterol transporters (ABCA1, SRB1, CD36) and acceptor proteins (apo A-I, apo E) in response to TNF-α.
  • To elucidate the signaling pathways involved in TNF-α-mediated regulation of cholesterol transport in osteocytes.

Main Methods:

  • Utilized the mouse osteocyte cell line (MLO-Y4).
  • Treated cells with TNF-α and assessed expression of cholesterol transporters, acceptor proteins, and related signaling molecules.
  • Investigated the role of p38 MAP kinase, JNK1, and MEK pathways using pharmacological inhibitors.

Main Results:

  • TNF-α reduced ABCA1 protein levels and cholesterol efflux in a dose-dependent manner.
  • TNF-α increased ABCA1 promoter activity, ABCA1 mRNA, and liver X receptor α protein expression.
  • p38 MAP kinase inhibition restored ABCA1 protein levels in TNF-α-treated cells, while JNK1 and MEK inhibition did not.

Conclusions:

  • Pro-inflammatory cytokines, specifically TNF-α, regulate osteocyte cholesterol metabolism.
  • TNF-α suppresses ABCA1 protein levels post-translationally through a p38 MAP kinase-dependent mechanism.
  • These findings suggest a molecular link between inflammation, cholesterol transport, and bone metabolism, potentially contributing to osteoporosis.

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