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Subcellular organelle lipidomics in TLR-4-activated macrophages

机译:TLR-4活化巨噬细胞中的亚细胞器脂质组学

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摘要

Lipids orchestrate biological processes by acting remotely as signaling molecules or locally as membrane components that modulate protein function. Detailed insight into lipid function requires knowledge of the subcellular localization of individual lipids. We report an analysis of the subcellular lipidome of the mammalian macrophage, a cell type that plays key roles in inflammation, immune responses, and phagocytosis. Nuclei, mitochondria, endoplasmic reticulum (ER), plasmalemma, and cytoplasm were isolated from RAW 264.7 macrophages in basal and activated states. Subsequent lipidomic analyses of major membrane lipid categories identified 229 individual/isobaric species, including 163 glycerophospholipids, 48 sphingolipids, 13 sterols, and 5 prenols. Major subcellular compartments exhibited substantially divergent glycerophospholipid profiles. Activation of macrophages by the Toll-like receptor 4-specific lipopolysaccharide Kdo2-lipid A caused significant remodeling of the subcellular lipidome. Some changes in lipid composition occurred in all compartments (e.g., increases in the levels of ceramides and the cholesterol precursors desmosterol and lanosterol). Other changes were manifest in specific organelles. For example, oxidized sterols increased and unsaturated cardiolipins decreased in mitochondria, whereas unsaturated ether-linked phosphatidylethanolamines decreased in the ER. We speculate that these changes may reflect mitochondrial oxidative stress and the release of arachidonic acid from the ER in response to cell activation.
机译:脂质通过远程充当信号分子或局部充当调节蛋白质功能的膜成分来协调生物过程。对脂质功能的详细了解需要了解单个脂质的亚细胞定位。我们报告了哺乳动物巨噬细胞的亚细胞脂质组的分析,一种在炎症,免疫反应和吞噬作用中起关键作用的细胞类型。从基础状态和激活状态的RAW 264.7巨噬细胞中分离出细胞核,线粒体,内质网(ER),浆膜和细胞质。随后对主要膜脂质类别的脂质组学分析确定了229种个体/等压物种,包括163种甘油磷脂,48种鞘脂,13种固醇和5种前醇。主要的亚细胞区室表现出基本上发散的甘油磷脂谱。 Toll样受体4特异性脂多糖Kdo2-脂质A对巨噬细胞的激活引起亚细胞脂质体的重塑。所有隔室中的脂质组成都发生了一些变化(例如,神经酰胺和胆固醇前体去甾醇和羊毛甾醇的含量增加)。其他变化出现在特定的细胞器中。例如,线粒体中的氧化固醇增加,不饱和心磷脂减少,而内质网中不饱和醚连接的磷脂酰乙醇胺减少。我们推测这些变化可能反映线粒体的氧化应激和响应于细胞活化从ER释放花生四烯酸。

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