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August 1, 1999Journal of Biological Chemistry591 citationsOpen Access

Ceramide Generation Is Sufficient to Account for the Inhibition of the Insulin-stimulated PKB Pathway in C2C12 Skeletal Muscle Cells Pretreated with Palmitate

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CSCarsten Schmitz‐PeifferDCDenby L. CraigTBTrevor J. Biden

Key Points

  • This research examines how ceramide affects insulin signaling and glycogen metabolism in skeletal muscle cells.
  • C2C12 myotubes were preincubated with free fatty acids for 18 hours before insulin stimulation.
  • Glycogen synthesis and phosphorylation of signaling intermediates were measured in response to different FFAs.
  • Levels of ceramide were assessed in palmitate-treated cells to determine its role in insulin signaling.
  • Palmitate reduced insulin-stimulated glycogen synthesis and inhibited PKB phosphorylation, while having no effect on IRS-1 signaling.
  • Ceramide levels increased two-fold in palmitate-treated cells, mimicking the effects observed with palmitate alone.
  • Ceramide incubation led to reduced glycogen synthesis and PKB inhibition, suggesting a distinct pathway of insulin resistance.

Abstract

We have employed C2C12 myotubes to investigate lipid inhibition of insulin-stimulated signal transduction and glucose metabolism. Cells were preincubated for 18 h in the absence or presence of free fatty acids (FFAs) and stimulated with insulin, and the effects on glycogen synthesis and signaling intermediates were determined. While the unsaturated FFAs oleate and linoleate inhibited both basal and insulin-stimulated glycogen synthesis, the saturated FFA palmitate reduced only insulin-stimulated glycogen synthesis, and was found to inhibit insulin-stimulated phosphorylation of glycogen synthase kinase-3 and protein kinase B (PKB). However, no effect of palmitate was observed on tyrosine phosphorylation, p85 association, or phosphatidylinositol 3-kinase activity in IRS-1 immunoprecipitates. In contrast, palmitate promoted phosphorylation of mitogen-activated protein MAP) kinases. Ceramide, a derivative of palmitate, has recently been associated with similar inhibition of PKB, and here, ceramide levels were found to be elevated 2-fold in palmitate-treated C2C12 cells. Incubation of C2C12 cells with ceramide closely reproduced the effects of palmitate, leading to inhibition of glycogen synthesis and PKB and to stimulation of MAP kinase. We conclude that palmitate-induced insulin resistance occurs by a mechanism distinct from that of unsaturated FFAs, and involves elevation of ceramide by de novo synthesis, leading to PKB inhibition without affecting IRS-1 function.

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Cite This Study

Schmitz‐Peiffer et al. (1999) studied this question.

synapsesocial.com/papers/6a17da233aabde875b130417https://doi.org/10.1074/jbc.274.34.24202
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