小鼠肠道胆固醇吸收过程中NPC1L1介导的囊泡内吞作用的荧光可视化和评价

Xiaojing Wu, Xian-Hua Ma, Jie Lin, Xiaohang Yang, Jianhui Shi, Zhifang Xie, Yu-Xia Chen, Weiping J. Zhang
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引用次数: 2

摘要

肠腔对胆固醇的过度吸收有助于高胆固醇血症的发病机制,而高胆固醇血症是动脉粥样硬化性心血管疾病的独立危险因素。Niemann-Pick C1样1(NPC1L1)是负责胆固醇吸收的主要膜蛋白,其中囊泡内吞作用的生理作用仍然存在争议,并且缺乏一种可行的工具来可视化和评估NPC1L1囊泡在体内的内吞作用。在此,我们在敲除小鼠模型中用EGFP对内源性NPC1L1蛋白进行了基因标记,并展示了肠胆固醇吸收过程中NPC1L1 cago内吞小泡的荧光可视化和评估。纯合NPC1L1-EGFP小鼠在食物或高胆固醇饮食中具有正常的NPC1L1表达模式以及胆固醇稳态。NPC1L1-EGFP融合蛋白的荧光定位于小肠刷状边界膜,并且EGFP阳性囊泡早在胆固醇灌胃后5分钟就在膜下可见。值得注意的是,囊泡与早期内体标记物早期内体抗原1(EEA1)和filipin染色的游离胆固醇共定位。NPC1L1抑制剂依折麦布预处理可抑制这些胆固醇诱导的内吞小泡的形成。我们的数据支持NPC1L1介导的胆固醇吸收是一个囊泡内吞过程的观点。NPC1L1-EGFP小鼠是一种有用的模型,用于可视化细胞NPC1L1货物囊泡行程,并用于评估体内NPC1L1对不同药物和营养物质的反应活性。
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Fluorescent visualization and evaluation of NPC1L1-mediated vesicular endocytosis during intestinal cholesterol absorption in mice
Excessive cholesterol absorption from intestinal lumen contributes to the pathogenesis of hypercholesterolemia, which is an independent risk factor for atherosclerotic cardiovascular disease. Niemann-Pick C1-like 1 (NPC1L1) is a major membrane protein responsible for cholesterol absorption, in which the physiological role of vesicular endocytosis is still controversial, and it lacks a feasible tool to visualize and evaluate the endocytosis of NPC1L1 vesicles in vivo. Here, we genetically labelled endogenous NPC1L1 protein with EGFP in a knock-in mouse model, and demonstrated fluorescent visualization and evaluation of the endocytic vesicles of NPC1L1-cago during intestinal cholesterol absorption. The homozygous NPC1L1-EGFP mice have normal NPC1L1 expression pattern as well as cholesterol homeostasis on chow or high-cholesterol diets. The fluorescence of NPC1L1-EGFP fusion protein localizes at the brush border membrane of small intestine, and EGFP-positive vesicles is visualized beneath the membrane as early as 5 min post oral gavage of cholesterol. Of note, the vesicles colocalize with the early endosomal marker early endosome antigen 1 (EEA1) and the filipin-stained free cholesterol. Pretreatment with NPC1L1 inhibitor ezetimibe inhibits the formation of these cholesterol-induced endocytic vesicles. Our data support the notion that NPC1L1-mediated cholesterol absorption is a vesicular endocytic process. NPC1L1-EGFP mice are a useful model for visualizing cellular NPC1L1-cargo vesicle itineraries and for evaluating of NPC1L1 activity in vivo in response to diverse pharmacological agents and nutrients.
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