4.8 Article

Reducing endoplasmic reticulum stress through a macrophage lipid chaperone alleviates atherosclerosis

Journal

NATURE MEDICINE
Volume 15, Issue 12, Pages 1383-U5

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/nm.2067

Keywords

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Funding

  1. NHLBI NIH HHS [R01 HL065405, R01 HL065405-09, F32 HL090258, HL65405] Funding Source: Medline
  2. NIDDK NIH HHS [P30 DK040561-14, DK DK52539, R01 DK052539, DK59637, U24 DK059637, P30 DK040561] Funding Source: Medline
  3. NIEHS NIH HHS [T32 ES016645] Funding Source: Medline

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Macrophages show endoplasmic reticulum (ER) stress when exposed to lipotoxic signals associated with atherosclerosis, although the pathophysiological importance and the underlying mechanisms of this phenomenon remain unknown. Here we show that mitigation of ER stress with a chemical chaperone results in marked protection against lipotoxic death in macrophages and prevents macrophage fatty acid-binding protein-4 (aP2) expression. Using genetic and chemical models, we show that aP2 is the predominant regulator of lipid-induced macrophage ER stress. The absence of lipid chaperones incites an increase in the production of phospholipids rich in monounsaturated fatty acids and bioactive lipids that render macrophages resistant to lipid-induced ER stress. Furthermore, the impact of aP2 on macrophage lipid metabolism and the ER stress response is mediated by upregulation of key lipogenic enzymes by the liver X receptor. Our results demonstrate the central role for lipid chaperones in regulating ER homeostasis in macrophages in atherosclerosis and show that ER responses can be modified, genetically or chemically, to protect the organism against the deleterious effects of hyperlipidemia.

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