4.8 Article

Etomoxir Inhibits Macrophage Polarization by Disrupting CoA Homeostasis

期刊

CELL METABOLISM
卷 28, 期 3, 页码 490-+

出版社

CELL PRESS
DOI: 10.1016/j.cmet.2018.06.001

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资金

  1. NIH [R01NS087611, R01AI122282, R01NS072241]
  2. American Heart Association
  3. Agilent Technologies
  4. HiLF and the Ellen-Schmidt Program from the Medical School Hannover
  5. Boehringer Ingelheim Fonds, Foundation for Basic Research in Medicine

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Long-chain fatty acid (LCFA) oxidation has been shown to play an important role in interleukin-4 (IL-4)-mediated macrophage polarization (M(IL-4)). However, many of these conclusions are based on the inhibition of carnitine palmitoyltransferase-1 with high concentrations of etomoxir that far exceed what is required to inhibit enzyme activity (EC90 < 3 mM). We employ genetic and pharmacologic models to demonstrate that LCFA oxidation is largely dispensable for IL-4-driven polarization. Unexpectedly, high concentrations of etomoxir retained the ability to disrupt M(IL-4) polarization in the absence of Cpt1a or Cpt2 expression. Although excess etomoxir inhibits the adenine nucleotide translocase, oxidative phosphorylation is surprisingly dispensable for M(IL-4). Instead, the block in polarization was traced to depletion of intracellular free coenzyme A (CoA), likely resulting from conversion of the pro-drug etomoxir into active etomoxiryl CoA. These studies help explain the effect(s) of excess etomoxir on immune cells and reveal an unappreciated role for CoA metabolism in macrophage polarization.

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