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尼曼-皮克C1样蛋白1促进虹吸藻黄素的肠道吸收。

Niemann-Pick C1-like 1 Promotes Intestinal Absorption of Siphonaxanthin.

作者信息

Manabe Yuki, Ichihara Misato, Fukuda Kyoko, Tomonaga Nami, Li Zhuo-Si, Yamanashi Yoshihide, Suzuki Hiroshi, Takada Tappei, Matsuo Michinori, Sugawara Tatsuya

机构信息

Division of Applied Biosciences, Graduate School of Agriculture, Kyoto University, Kitashirakawa Oiwake-cho, Sakyo-ku, Kyoto, 606-8502, Japan.

Department of Food and Nutrition, Kyoto Women's University, 35 Kitahiyoshi-cho, Imakumano, Higashiyama-ku, Kyoto, 605-8501, Japan.

出版信息

Lipids. 2019 Nov;54(11-12):707-714. doi: 10.1002/lipd.12194. Epub 2019 Oct 1.

Abstract

Siphonaxanthin is a carotenoid found in certain green algae, and its promising beneficial properties, such as its anti-obesity effect, have recently been demonstrated. However, there is little information about the molecular mechanisms underlying intestinal absorption of siphonaxanthin. In this study, we aimed to elucidate how siphonaxanthin is transported across the intestinal epithelium using differentiated Caco-2 cells (dCaco-2 cells), recombinant proteins, and an animal model. Siphonaxanthin was taken up by dCaco-2 cells, a model of intestinal epithelial cells, and its uptake linearly increased up to at least 6 h. Pharmacological inhibition of Nieman-Pick C1-like 1 (NPC1L1), but not that of scavenger receptor class B type 1 (SR-B1), significantly suppressed siphonaxanthin uptake by dCaco-2 cells. Results from an in vitro binding assay suggested that the N-terminal domain of NPC1L1, which is an extracellular domain of NPC1L1, binds with siphonaxanthin. Moreover, pretreatment with ezetimibe, an inhibitor of NPC1L1, significantly decreased the plasma level of siphonaxanthin following oral administration in mice. Considered together, we concluded that NPC1L1 promotes siphonaxanthin transport across the intestinal epithelium.

摘要

虹吸藻黄素是一种存在于某些绿藻中的类胡萝卜素,其具有如抗肥胖作用等有前景的有益特性,最近已得到证实。然而,关于虹吸藻黄素肠道吸收的分子机制的信息却很少。在本研究中,我们旨在利用分化的Caco-2细胞(dCaco-2细胞)、重组蛋白和动物模型来阐明虹吸藻黄素是如何跨肠上皮转运的。虹吸藻黄素被肠上皮细胞模型dCaco-2细胞摄取,其摄取量在至少6小时内呈线性增加。对尼曼-匹克C1样1蛋白(NPC1L1)进行药理抑制,而非对B1型清道夫受体(SR-B1)进行抑制,可显著抑制dCaco-2细胞对虹吸藻黄素的摄取。体外结合试验结果表明,NPC1L1的N端结构域(即NPC1L1的细胞外结构域)与虹吸藻黄素结合。此外,用NPC1L1抑制剂依泽替米贝预处理可显著降低小鼠口服虹吸藻黄素后的血浆水平。综合考虑,我们得出结论,NPC1L1促进虹吸藻黄素跨肠上皮的转运。

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