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Fatty acid transport protein 4 is dispensable for intestinal lipid absorption in mice

机译:脂肪酸转运蛋白4是小鼠肠道脂质吸收所必需的

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摘要

FA transport protein 4 (FATP4), one member of a multigene family of FA transporters, was proposed as a major FA transporter in intestinal lipid absorption. Due to the fact that Fatp4−/− mice die because of a perinatal skin defect, we rescued the skin phenotype using an FATP4 transgene driven by a keratinocyte-specific promoter (Fatp4−/−;Ivl-Fatp4tg/+ mice) to elucidate the role of intestinal FATP4 in dietary lipid absorption. Fatp4−/−;Ivl-Fatp4tg/+ mice and wild-type littermates displayed indistinguishable food consumption, growth, and weight gain on either low or high fat (Western) diets, with no differences in intestinal triglyceride (TG) absorption or fecal fat losses. Cholesterol absorption and intestinal TG absorption kinetics were indistinguishable between the genotypes, although Western diet fed Fatp4−/−;Ivl-Fatp4tg/+ mice showed a significant increase in enterocyte TG and FA content. There was no compensatory upregulation of other FATP family members or any other FA or cholesterol transporters in Fatp4−/−;Ivl-Fatp4tg/+ mice. Furthermore, although serum cholesterol levels were lower in Fatp4−/−;Ivl-Fatp4tg/+ mice, there was no difference in hepatic VLDL secretion in-vivo or in hepatic lipid content on either a chow or Western diet. Taken together, our studies find no evidence for a physiological role of intestinal FATP4 in dietary lipid absorption in mice.
机译:FA转运蛋白4(FATP4)是FA转运蛋白多基因家族的成员之一,被认为是肠道脂质吸收的主要FA转运蛋白。由于Fatp4 -/-小鼠因围生期皮肤缺陷而死亡,因此我们使用由角质形成细胞特异性启动子驱动的FATP4转基因拯救了皮肤表型(Fatp4 -/-< / sup>; Ivl-Fatp4 tg / + 小鼠)以阐明肠道FATP4在饮食脂质吸收中的作用。 Fatp4 -/-; Ivl-Fatp4 tg / + 小鼠和野生同窝幼仔在低脂肪或高脂肪下显示出难以区分的食物消耗,生长和体重增加(西方)饮食,肠内甘油三酸酯(TG)吸收或粪便脂肪减少没有差异。尽管西方饮食喂养的Fatp4 -/-; Ivl-Fatp4 tg / + 小鼠显示肠上皮TG显着增加,但基因型之间的胆固醇吸收和肠道TG吸收动力学没有区别。和FA内容。 Fatp4 -/- ; Ivl-Fatp4 tg / + <没有其他FATP家族成员或任何其他FA或胆固醇转运蛋白的补偿性上调。 / em> 小鼠。此外,尽管 Fatp4 -// 中的血清胆固醇水平较低; Ivl-Fatp4 tg / + 小鼠,无论是周日饮食还是西式饮食,肝脏VLDL的体内分泌或肝脂质含量均无差异。两者合计,我们的研究没有发现肠道FATP4在小鼠饮食脂质吸收中的生理作用的证据。

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