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Deletion of lysophosphatidylcholine acyltransferase 3 in myeloid cells worsens hepatic steatosis after a high-fat diet

机译:在高脂饮食后裂解溶血磷脂酰胆碱酰基转移酶3恶化肝脏脂肪变性

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摘要

Recent studies have highlighted an important role for lysophosphatidylcholine acyltransferase 3 (LPCAT3) in controlling the PUFA composition of cell membranes in the liver and intestine. In these organs, LPCAT3 critically supports cell-membrane-associated processes such as lipid absorption or lipoprotein secretion. However, the role of LPCAT3 in macrophages remains controversial. Here, we investigated LPCAT3's role in macrophages both in vitro and in vivo in mice with atherosclerosis and obesity. To accomplish this, we used the LysMCre strategy to develop a mouse model with conditional Lpcat3 deficiency in myeloid cells (Lpcat3KOMac). We observed that partial Lpcat3 deficiency (approximately 75% reduction) in macrophages alters the PUFA composition of all phospholipid (PL) subclasses, including phosphatidylinositols and phosphatidylserines. A reduced incorporation of C20 PUFAs (mainly arachidonic acid [AA]) into PLs was associated with a redistribution of these FAs toward other cellular lipids such as cholesteryl esters. Lpcat3 deficiency had no obvious impact on macrophage inflammatory response or endoplasmic reticulum (ER) stress; however, Lpcat3KOMac macrophages exhibited a reduction in cholesterol efflux in vitro. In vivo, myeloid Lpcat3 deficiency did not affect atherosclerosis development in LDL receptor deficient mouse (Ldlr−/−) mice. Lpcat3KOMac mice on a high-fat diet displayed a mild increase in hepatic steatosis associated with alterations in several liver metabolic pathways and in liver eicosanoid composition. We conclude that alterations in AA metabolism along with myeloid Lpcat3 deficiency may secondarily affect AA homeostasis in the whole liver, leading to metabolic disorders and triglyceride accumulation.
机译:最近的研究突出了溶血磷脂酰胆碱酰基转移酶3(LPCAT3)在控制肝脏和肠道中的细胞膜的PUFA组合物中的重要作用。在这些器官中,LPCAT3批判性地支持细胞膜相关方法,例如脂质吸收或脂蛋白分泌。然而,LPCAT3在巨噬细胞中的作用仍然存在争议。在这里,我们研究了LPCAT3在体外和体内巨噬细胞中的作用,在具有动脉粥样硬化和肥胖症的小鼠中。为实现这一目标,我们使用Lysmcre策略在骨髓细胞(LPCAT3Komac)中具有条件LPCAT3缺乏的鼠标模型。我们观察到,巨噬细胞的部分LPCAT3缺陷(约75%的减少)改变了所有磷脂(PL)亚类的PUFA组合物,包括磷脂酰肌醇和磷脂酰丝网。将C20 PUFA的减少(主要是花生四烯酸[AA])加入PLS中与这些FA的再分布相关,朝向其他细胞脂质如胆固醇酯。 LPCAT3缺陷对巨噬细胞炎症反应或内质网(ER)应力没有明显影响;然而,LPCAT3Komac巨噬细胞在体外表现出胆固醇流出的减少。体内,骨髓LPCAT3缺乏不影响LDL受体缺陷小鼠(LDLR - / - )小鼠的动脉粥样硬化发育。 LPCAT3Komac小鼠在高脂肪饮食中显示出与几种肝脏代谢途径和肝脏籽糖组合物中的改变相关的肝脏脂肪变性的轻度增加。我们得出结论,AA新陈代谢随着骨髓LPCAT3缺乏的改变可能是整个肝脏中的AA稳态,导致代谢障碍和甘油三酯积累。

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