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首页> 外文期刊>The Journal of Nutritional Biochemistry >Polyunsaturated fatty acids down-regulate in vitro expression of the key intestinal cholesterol absorption protein NPC1L1: no effect of monounsaturated nor saturated fatty acids.
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Polyunsaturated fatty acids down-regulate in vitro expression of the key intestinal cholesterol absorption protein NPC1L1: no effect of monounsaturated nor saturated fatty acids.

机译:多不饱和脂肪酸下调关键肠胆固醇吸收蛋白NPC1L1的体外表达:单不饱和或饱和脂肪酸均无作用。

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摘要

Several transporter proteins regulate intestinal cholesterol absorption. Of these proteins, NPC1L1 is a major contributor to this process. Fatty acids (FAs) modulate cholesterol absorption by a mechanism that remains unknown. We evaluate the effect of saturated fatty acids (SFAs), monounsaturated fatty acids (MUFAs) and polyunsaturated fatty acids (PUFAs) on the expression of NPC1L1 and others proteins associated with cholesterol absorption (SR-BI, ABCG5, ABCG8, ABCA1, CAV-1, ANX-2) in human enterocytes in vitro. The role of SREBPs, PPARs, LXR and RXR in this process was also investigated. Caco-2/TC-7 enterocytes were incubated for 24 h with a wide range of concentrations of FA-bovine serum albumin (50-300 micro M). Gene expression was analyzed by quantitative real-time PCR. The NPC1L1 protein present in enterocyte membranes was analyzed using Western blot. NPC1L1 mRNA levels were reduced 35-58% by the n-3 PUFAs, eicosapentaenoic acid (EPA) and docosahexaenoic acid (DHA) (P<.05). Linoleic acid (n-6), palmitic acid and oleic acid did not affect NPC1L1 mRNA expression. ABCA1 mRNA levels were reduced 44-70% by n-6 arachidonic acid and 43-55% by n-3 EPA (P<.05). LXR and LXR+RXR agonists decreased NPC1L1 mRNA expression by 28% and 57%, respectively (P<.05). A concentration of 200 micro M of EPA and DHA decreased NPC1L1 protein expression in enterocyte membranes by 58% and 59%, respectively. We have demonstrated that the PUFAs n-3 EPA and DHA down-regulate NPC1L1 mRNA expression. In addition, PUFAs also down-regulate NPC1L1 protein expression in enterocyte membranes. LXR and RXR activation induced a similar repression effect. The lipid-lowering effect of n-3 PUFAs could be mediated in part by their action at the NPC1L1 gene level.
机译:几种转运蛋白调节肠道胆固醇的吸收。在这些蛋白质中,NPC1L1是该过程的主要贡献者。脂肪酸(FAs)通过未知的机制调节胆固醇的吸收。我们评估了饱和脂肪酸(SFA),单不饱和脂肪酸(MUFAs)和多不饱和脂肪酸(PUFAs)对NPC1L1和其他与胆固醇吸收有关的蛋白质(SR-BI,ABCG5,ABCG8,ABCA1,CAV- 1,ANX-2)在体外人类肠上皮细胞中。还研究了SREBP,PPAR,LXR和RXR在此过程中的作用。将Caco-2 / TC-7肠上皮细胞与各种浓度的FA牛血清白蛋白(50-300 micro M)孵育24小时。通过定量实时PCR分析基因表达。使用蛋白质印迹法分析肠细胞膜中存在的NPC1L1蛋白。 n-3 PUFA,二十碳五烯酸(EPA)和二十二碳六烯酸(DHA)将 NPC1L1 mRNA水平降低了35-58%( P <。05)。亚油酸(n-6),棕榈酸和油酸不影响 NPC1L1 mRNA的表达。 n-6花生四烯酸将 ABCA1 mRNA水平降低44-70%,n-3 EPA将 ABCA1 mRNA水平降低43-55%( P <。05)。 LXR和LXR + RXR激动剂分别使 NPC1L1 mRNA表达降低28%和57%( P <。05)。浓度为200 micro M的EPA和DHA分别使肠细胞膜中NPC1L1蛋白的表达降低58%和59%。我们已经证明,PUFA n-3 EPA和DHA下调 NPC1L1 mRNA表达。此外,PUFA还下调了肠细胞膜中NPC1L1蛋白的表达。 LXR和RXR激活引起类似的抑制作用。 n-3 PUFA的降脂作用可能部分由其在NPC1L1基因水平上的作用介导。

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