Saturated Fatty Acids Undergo Intracellular Crystallization and Activate the NLRP3 Inflammasome in Macrophages

炎症体 细胞内 炎症 结晶 吡喃结构域 化学 棕榈酸 油酸 细胞生物学 生物化学 脂肪酸 受体 生物 免疫学 有机化学
作者
Tadayoshi Karasawa,Akira Kawashima,Fumitake Usui‐Kawanishi,Sachiko Watanabe,Hiroaki Kimura,Ryo Kamata,Koumei Shirasuna,Yutaro Koyama,Ayana Tomita,Takashi Matsuzaka,Hiroshi Tomoda,Sam‐Yong Park,Naoya Shibayama,Hitoshi Shimano,Tadashi Kasahara,Masafumi Takahashi
出处
期刊:Arteriosclerosis, Thrombosis, and Vascular Biology [Ovid Technologies (Wolters Kluwer)]
卷期号:38 (4): 744-756 被引量:116
标识
DOI:10.1161/atvbaha.117.310581
摘要

Objective— Inflammation provoked by the imbalance of fatty acid composition, such as excess saturated fatty acids (SFAs), is implicated in the development of metabolic diseases. Recent investigations suggest the possible role of the NLRP3 (nucleotide-binding oligomerization domain, leucine-rich repeat and pyrin domain containing 3) inflammasome, which regulates IL-1β (interleukin 1β) release and leads to inflammation, in this process. Therefore, we investigated the underlying mechanism by which SFAs trigger NLRP3 inflammasome activation. Approach and Results— The treatment with SFAs, such as palmitic acid and stearic acid, promoted IL-1β release in murine primary macrophages while treatment with oleic acid inhibited SFA-induced IL-1β release in a dose-dependent manner. Analyses using polarized light microscopy revealed that intracellular crystallization was provoked in SFA-treated macrophages. As well as IL-1β release, the intracellular crystallization and lysosomal dysfunction were inhibited in the presence of oleic acid. These results suggest that SFAs activate NLRP3 inflammasome through intracellular crystallization. Indeed, SFA-derived crystals activated NLRP3 inflammasome and subsequent IL-1β release via lysosomal dysfunction. Excess SFAs also induced crystallization and IL-1β release in vivo. Furthermore, SFA-derived crystals provoked acute inflammation, which was impaired in IL-1β–deficient mice. Conclusions— These findings demonstrate that excess SFAs cause intracellular crystallization and subsequent lysosomal dysfunction, leading to the activation of the NLRP3 inflammasome, and provide novel insights into the pathogenesis of metabolic diseases.
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