4.8 Article

Lanosterol Modulates TLR4-Mediated Innate Immune Responses in Macrophages

Journal

CELL REPORTS
Volume 19, Issue 13, Pages 2743-2755

Publisher

CELL PRESS
DOI: 10.1016/j.celrep.2017.05.093

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Funding

  1. Rheumatic Diseases Research Core Centers [5 P30 AR053495-07]
  2. NIH [R01HL105945, R35HL135820]
  3. Yale Cancer Center [P30 CA16359]
  4. Howard Hughes Medical Institute International Student Research Fellowship
  5. American Heart Association [16GRNT26420047, 16EIA27550004, 14SDG20490020]
  6. Foundation Leducq Transatlantic Network of Excellence in Cardiovascular Research, MIRVAD
  7. Ministerio de Economi a y Comercio, VI Plan Estatal de Investigacion Cientifica y Tecnica y de Innovacion [SAF2015-70747-R]

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Macrophages perform critical functions in both innate immunity and cholesterol metabolism. Here, we report that activation of Toll-like receptor 4 (TLR4) in macrophages causes lanosterol, the first sterol intermediate in the cholesterol biosynthetic pathway, to accumulate. This effect is due to type I interferon (IFN)-dependent histone deacetylase 1 (HDAC1) transcriptional repression of lanosterol-14 alpha-demethylase, the gene product of Cyp51A1. Lanosterol accumulation in macrophages, because of either treatment with ketoconazole or induced conditional disruption of Cyp51A1 in mouse macrophages in vitro, decreases IFN beta-mediated signal transducer and activator of transcription (STAT)-1-STAT2 activation and IFN beta-stimulated gene expression. These effects translate into increased survival to endotoxemic shock by reducing cytokine secretion. In addition, lanosterol accumulation increases membrane fluidity and ROS production, thus potentiating phagocytosis and the ability to kill bacteria. This improves resistance of mice to Listeria monocytogenes infection by increasing bacterial clearance in the spleen and liver. Overall, our data indicate that lanosterol is an endogenous selective regulator of macrophage immunity.

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