AI Article Synopsis

  • Elevated levels of circulating interleukin-6 (IL-6), insulin, and free fatty acids (FFAs) are linked to poor insulin response in people with obesity and type 2 diabetes, but the direct effect of FFAs on IL-6 hasn't been established.
  • Researchers studied how FFAs, particularly saturated FFAs like palmitate, influence IL-6 production in human muscle cells, finding that palmitate stimulates IL-6 expression via a specific cellular mechanism, while unsaturated FFAs can inhibit this effect.
  • Despite increased IL-6 levels in response to palmitate, it did not impair insulin action in muscle cells, suggesting that dietary composition of FFAs may influence IL-6 production without directly affecting insulin sensitivity

Article Abstract

Circulating interleukin-6 (IL-6), insulin, and free fatty acid (FFA) concentrations are associated with impaired insulin action in obese and type 2 diabetic individuals. However, a causal relationship between elevated plasma FFAs and IL-6 has not been shown. Because skeletal muscle represents a major target of impaired insulin action, we studied whether FFAs may affect IL-6 expression in human myotubes. We demonstrate that specifically saturated FFAs, e.g. palmitate (0.25 mm), induce IL-6 mRNA expression and protein secretion by a proteasome-dependent mechanism that leads to a rapid and chronic activation of nuclear factor-kappaB. Insulin, high glucose concentrations, or unsaturated FFAs did not activate IL-6 expression. In fact, the unsaturated FFA linoleate inhibited palmitate-induced IL-6 production. Because inhibition of palmitate metabolism by the acyl-CoA synthetase inhibitor triacsin C did not abolish IL-6 expression, it appears that the palmitate molecule per se exerts the observed effects. Furthermore, we show that in human myotubes, IL-6 activates the phosphorylation of signal transducer and activator of transcription 3 in concentrations similar to hepatocytes. However, no inhibitory effect of IL-6 on insulin action, determined as phosphatidylinositol 3-kinase association with insulin receptor substrate-1, Akt phosphorylation, and glycogen synthesis, was detected. We conclude that IL-6 expression may be modulated by the composition of circulating FFA, e.g. by diet, and that skeletal muscle cells could be target cells for IL-6.

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http://dx.doi.org/10.1074/jbc.M312692200DOI Listing

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