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利用 NBD-胆固醇鉴定小鼠肠道中一条次要的、但不依赖 NPC1L1 的胆固醇吸收途径。

Use of NBD-cholesterol to identify a minor but NPC1L1-independent cholesterol absorption pathway in mouse intestine.

机构信息

Department of Pathology and Laboratory Medicine, Metabolic Diseases Institute, University of Cincinnati College of Medicine, Cincinnati, Ohio 45237, USA.

出版信息

Am J Physiol Gastrointest Liver Physiol. 2011 Jan;300(1):G164-9. doi: 10.1152/ajpgi.00392.2010. Epub 2010 Nov 11.

Abstract

The importance of Niemann-Pick C1 Like-1 (NPC1L1) protein in intestinal absorption of dietary sterols, including both cholesterol and phytosterols, is well documented. However, the exact mechanism by which NPC1L1 facilitates cholesterol transport remains controversial. This study administered 22-(N(-7-nitrobenz-2-oxa-1,3-diazol-4-yl)amino)-23,24-bisnor-5-cholen-3β-ol (NBD-cholesterol) and [(3)H]cholesterol to Npc1l1(+/+) and Npc1l1(-/-) mice to determine whether NPC1L1 facilitates dietary sterol uptake by enterocytes and/or participates in intracellular sterol delivery to the endoplasmic reticulum (ER) for lipoprotein assembly before secretion into plasma circulation. Results showed that [(3)H]cholesterol absorption was reduced but not abolished in Npc1l1(-/-) mice compared with Npc1l1(+/+) mice. In the presence of Pluronic L-81 to block pre-chylomicron exit from the ER, significant amounts of [(3)H]cholesterol were found to be associated with lipid droplets in the intestinal mucosa of both Npc1l1(+/+) and Npc1l1(-/-) mice, and the intracellular [(3)H]cholesterol can be esterified to cholesteryl esters. These results provided evidence indicating that the main function of NPC1L1 is to promote cholesterol uptake from the intestinal lumen but that it is not necessary for intracellular cholesterol transport to the ER. Surprisingly, NBD-cholesterol was taken up by intestinal mucosa, esterified to NBD-cholesteryl esters, and transported to plasma circulation to similar extent between Npc1l1(+/+) and Npc1l1(-/-) mice. Ezetimibe treatment also had no impact on NBD-cholesterol absorption by Npc1l1(+/+) mice. Thus, NBD-cholesterol absorption proceeds through an NPC1L1-independent and ezetimibe-insensitive sterol absorption mechanism. Taken together, these results indicate that NBD-cholesterol can be used to trace the alternative cholesterol absorption pathway but is not suitable for tracking NPC1L1-mediated cholesterol absorption.

摘要

NPC1L1 蛋白在肠道吸收膳食固醇中的重要性,包括胆固醇和植物固醇,已有充分的文献记载。然而,NPC1L1 促进胆固醇转运的确切机制仍存在争议。本研究给 Npc1l1(+/+)和 Npc1l1(-/-)小鼠施用 22-(N(-7-硝基苯并-2-氧代-1,3-二唑-4-基)氨基)-23,24-双降-5-胆甾烯-3β-醇(NBD-胆固醇)和 [(3)H]胆固醇,以确定 NPC1L1 是否促进肠细胞摄取膳食固醇,和/或参与细胞内胆固醇向内质网(ER)的输送,以便组装成脂蛋白并分泌到血浆循环中。结果表明,与 Npc1l1(+/+)小鼠相比,[(3)H]胆固醇在 Npc1l1(-/-)小鼠中的吸收减少但未完全消除。在 Pluronic L-81 的存在下,阻止前乳糜微粒从 ER 中逸出,在 Npc1l1(+/+)和 Npc1l1(-/-)小鼠的肠黏膜中都发现大量 [(3)H]胆固醇与脂质滴相关,并且细胞内的 [(3)H]胆固醇可酯化形成胆固醇酯。这些结果提供了证据,表明 NPC1L1 的主要功能是促进从肠腔吸收胆固醇,但它对于将胆固醇从细胞内转运到 ER 并不是必需的。令人惊讶的是,NBD-胆固醇被肠黏膜摄取、酯化形成 NBD-胆固醇酯,并以相似的程度转运到血浆循环中,在 Npc1l1(+/+)和 Npc1l1(-/-)小鼠之间。依泽替米贝处理对 Npc1l1(+/+)小鼠的 NBD-胆固醇吸收也没有影响。因此,NBD-胆固醇的吸收是通过 NPC1L1 不依赖和依泽替米贝不敏感的固醇吸收机制进行的。综上所述,这些结果表明,NBD-胆固醇可用于追踪替代胆固醇吸收途径,但不适合追踪 NPC1L1 介导的胆固醇吸收。

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