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尼曼-匹克C2蛋白的转基因过表达促进小鼠胆固醇胆结石的形成。

Transgenic overexpression of Niemann-Pick C2 protein promotes cholesterol gallstone formation in mice.

作者信息

Acuña Mariana, González-Hódar Lila, Amigo Ludwig, Castro Juan, Morales M Gabriela, Cancino Gonzalo I, Groen Albert K, Young Juan, Miquel Juan Francisco, Zanlungo Silvana

机构信息

Department of Gastroenterology, Faculty of Medicine, Pontificia Universidad Católica de Chile, Santiago, Chile; FONDAP "Center for Genome Regulation" (CGR), Santiago, Chile.

Department of Gastroenterology, Faculty of Medicine, Pontificia Universidad Católica de Chile, Santiago, Chile.

出版信息

J Hepatol. 2016 Feb;64(2):361-369. doi: 10.1016/j.jhep.2015.10.002. Epub 2015 Dec 10.

Abstract

BACKGROUND & AIMS: Niemann-Pick C2 (NPC2) is a lysosomal protein involved in the egress of low-density lipoprotein-derived cholesterol from lysosomes to other intracellular compartments. NPC2 has been detected in several tissues and is also secreted from the liver into bile. We have previously shown that NPC2-deficient mice fed a lithogenic diet showed reduced biliary cholesterol secretion as well as cholesterol crystal and gallstone formation. This study aimed to investigate the consequences of NPC2 hepatic overexpression on liver cholesterol metabolism, biliary lipid secretion, gallstone formation and the effect of NPC2 on cholesterol crystallization in model bile.

METHODS

We generated NPC2 transgenic mice (Npc2.Tg) and fed them either chow or lithogenic diets. We studied liver cholesterol metabolism, biliary lipid secretion, bile acid composition and gallstone formation. We performed cholesterol crystallization studies in model bile using a recombinant NPC2 protein.

RESULTS

No differences were observed in biliary cholesterol content or secretion between wild-type and Npc2.Tg mice fed the chow or lithogenic diets. Interestingly, Npc2.Tg mice showed an increased susceptibility to the lithogenic diet, developing more cholesterol gallstones at early times, but did not show differences in the bile acid hydrophobicity and gallbladder cholesterol saturation indices compared to wild-type mice. Finally, recombinant NPC2 decreased nucleation time in model bile.

CONCLUSIONS

These results suggest that NPC2 promotes cholesterol gallstone formation by decreasing the cholesterol nucleation time, indicating a pro-nucleating function of NPC2 in bile.

摘要

背景与目的

尼曼-匹克C2型(NPC2)是一种溶酶体蛋白,参与低密度脂蛋白衍生胆固醇从溶酶体转运至其他细胞内区室的过程。NPC2已在多种组织中被检测到,并且也由肝脏分泌至胆汁中。我们之前已经表明,喂食致石性饮食的NPC2缺陷小鼠胆汁胆固醇分泌减少,同时胆固醇晶体和胆结石形成减少。本研究旨在探讨肝脏中NPC2过表达对肝脏胆固醇代谢、胆汁脂质分泌、胆结石形成的影响,以及NPC2对模拟胆汁中胆固醇结晶的作用。

方法

我们构建了NPC2转基因小鼠(Npc2.Tg),并分别喂食普通饲料或致石性饮食。我们研究了肝脏胆固醇代谢、胆汁脂质分泌、胆汁酸组成和胆结石形成情况。我们使用重组NPC2蛋白在模拟胆汁中进行胆固醇结晶研究。

结果

喂食普通饲料或致石性饮食的野生型和Npc2.Tg小鼠在胆汁胆固醇含量或分泌方面未观察到差异。有趣的是,Npc2.Tg小鼠对致石性饮食的易感性增加,在早期形成更多胆固醇胆结石,但与野生型小鼠相比,在胆汁酸疏水性和胆囊胆固醇饱和指数方面未显示出差异。最后,重组NPC2缩短了模拟胆汁中的成核时间。

结论

这些结果表明,NPC2通过缩短胆固醇成核时间促进胆固醇胆结石形成,提示NPC2在胆汁中具有促成核功能。

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