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首页> 外文期刊>The biochemical journal >Adaptation of enterocytic Caco-2 cells to glucose modulates triacylglycerol-rich lipoprotein secretion through triacylglycerol targeting into the endoplasmic reticulum lumen
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Adaptation of enterocytic Caco-2 cells to glucose modulates triacylglycerol-rich lipoprotein secretion through triacylglycerol targeting into the endoplasmic reticulum lumen

机译:肠溶性Caco-2细胞对葡萄糖的适应性通过将三酰甘油靶向内质网腔来调节富含三酰甘油的脂蛋白分泌

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pEnterocytes are responsible for the absorption of dietary lipids, which involves TRL [TG (triacylglycerol)-rich lipoprotein] assembly and secretion. In the present study, we analysed the effect on TRL secretion of Caco-2 enterocyte adaptation to a differential glucose supply. We showed that TG secretion in cells adapted to a low glucose supply for 2 weeks after confluence was double that of control cells maintained in high-glucose-containing medium, whereas the level of TG synthesis remained similar in both conditions. This increased secretion resulted mainly from an enlargement of the mean size of the secreted TRL. The increased TG availability for TRL assembly and secretion was not due to an increase in the MTP (microsomal TG transfer protein) activity that is required for lipid droplet biogenesis in the ER (endoplasmic reticulum) lumen, or to the channelling of absorbed fatty acids towards the monoacylglycerol pathway for TG synthesis. Interestingly, by electron microscopy and subcellular fractionation studies, we observed, in the low glucose condition, an increase in the TG content available for lipoprotein assembly in the ER lumen, with the cytosolic/microsomal TG levels being verapamil-sensitive. Overall, we demonstrate that Caco-2 enterocytes modulate TRL secretion through TG partitioning between the cytosol and the ER lumen according to the glucose supply. Our model will help in identifying the proteins involved in the control of the balance between TRL assembly and cytosolic lipid storage. This mechanism may be a way for enterocytes to regulate TRL secretion after a meal, and thus impact on our understanding of post-prandial hypertriglyceridaemia./p
机译:>肠上皮细胞负责饮食脂质的吸收,其中涉及TRL [富含TG(三酰基甘油)的脂蛋白]的组装和分泌。在本研究中,我们分析了Caco-2肠细胞适应不同葡萄糖供应对TRL分泌的影响。我们显示,汇合后2周内适应低葡萄糖供应的细胞中TG的分泌是在高葡萄糖培养基中维持的对照细胞的两倍,而在两种条件下TG的合成水平仍然相似。分泌增加主要是由于分泌的TRL的平均大小增加所致。 TG可用于TRL组装和分泌的增加不是由于ER(内质网)腔内脂质小滴生物发生所需的MTP(微粒体TG转移蛋白)活性增加,也不是由于吸收的脂肪酸向TG合成的单酰基甘油途径。有趣的是,通过电子显微镜和亚细胞分级研究,我们观察到在低葡萄糖条件下,内质网腔中脂蛋白装配可用的TG含量增加,胞浆/微粒体TG水平对维拉帕米敏感。总的来说,我们证明Caco-2肠上皮细胞根据葡萄糖的供应量通过TG在细胞质和ER内腔之间的分配来调节TRL分泌。我们的模型将有助于识别与TRL组装和胞质脂质存储之间的平衡控制有关的蛋白质。这种机制可能是进餐后肠细胞调节TRL分泌的一种方式,从而影响我们对餐后高甘油三酯血症的认识。

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