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Liver X Receptors Balance Lipid Stores in Hepatic Stellate Cells via Rab18 a Retinoid Responsive Lipid Droplet Protein

机译:肝X受体通过Rab18(一种类维生素A反应性脂质小滴蛋白)平衡肝星状细胞中的脂质存储

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摘要

Liver X receptors (LXRs) are determinants of hepatic stellate cell (HSC) activation and liver fibrosis. Freshly isolated HSCs from Lxrαβ−/− mice have increased lipid droplet (LD) size but the functional consequences of this are unknown. Our aim was to determine whether LXRs link cholesterol to retinoid storage in HSCs and how this impacts activation. Primary HSCs from Lxrαβ−/− and wild-type (WT) mice were profiled by gene array during in vitro activation. Lipid content was quantified by HPLC and mass spectroscopy. Primary HSCs were treated with nuclear receptor ligands, transfected with siRNA and plasmid constructs, and analyzed by immunocytochemistry. Lxrαβ−/− HSCs have increased cholesterol and retinyl esters (CEs & REs). The retinoid increase drives intrinsic retinoic acid receptor (RAR) signaling and activation occurs more rapidly in Lxrαβ−/− HSCs. We identify Rab18 as a novel retinoic acid responsive, lipid droplet associated protein that helps mediate stellate cell activation. Rab18 mRNA, protein, and membrane insertion increase during activation. Both Rab18 GTPase activity and isoprenylation are required for stellate cell lipid droplet loss and induction of activation markers. These phenomena are accelerated in the Lxrαβ−/− HSCs, where there is greater retinoic acid flux. Conversely, Rab18 knockdown retards lipid droplet loss in culture and blocks activation, just like the functional mutants. Rab18 is also induced with acute liver injury in vivo.ConclusionRetinoid and cholesterol metabolism are linked in stellate cells by the LD associated protein, Rab18. Retinoid overload helps explain the pro-fibrotic phenotype of Lxrαβ−/− mice and we establish a pivotal role for Rab18 GTPase activity and membrane insertion in wild-type stellate cell activation. Interference with Rab18 may have significant therapeutic benefit in ameliorating liver fibrosis.
机译:肝X受体(LXR)是肝星状细胞(HSC)活化和肝纤维化的决定因素。从Lxrαβ-/-小鼠新鲜分离的HSC具有增加的脂质滴(LD)大小,但其功能后果尚不清楚。我们的目的是确定LXR是否将胆固醇与HSC中的类维生素A储存联系起来,以及这如何影响活化。 Lxrαβ-/-和野生型(WT)小鼠的原代HSCs在体外激活过程中通过基因阵列进行了分析。脂质含量通过HPLC和质谱法定量。用核受体配体处理原代HSC,用siRNA和质粒构建体转染,并通过免疫细胞化学进行分析。 Lxrαβ-/- HSCs的胆固醇和视黄酯(CEs和REs)升高。类维生素A的增加驱动内在的维甲酸受体(RAR)信号传导,并且激活在Lxrαβ-/- HSC中更快地发生。我们确定Rab18为新型的视黄酸响应,脂质滴相关蛋白,有助于介导星状细胞活化。 Rab18 mRNA,蛋白质和膜插入在激活过程中增加。 Rab18 GTPase活性和异戊二烯酰化对于星状细胞脂质滴流失和激活标记的诱导都是必需的。这些现象在视黄酸通量更大的Lxrαβ-/- HSC中被加速。相反,与功能突变体一样,Rab18敲低可抑制培养物中脂质滴的损失并阻止其活化。结论Rab18在体内也可被急性肝损伤诱导。结论类维生素A和胆固醇代谢是通过LD相关蛋白Rab18在星状细胞中发生的。类视黄醇超载有助于解释Lxrαβ-/-小鼠的纤维化表型,我们在野生型星状细胞激活中建立Rab18 GTPase活性和膜插入的关键作用。干扰Rab18可能在改善肝纤维化方面具有显着的治疗作用。

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