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首页> 外文期刊>The Journal of Nutritional Biochemistry >Developmental changes in glycolipids and synchronized expression of nutrient transporters in the mouse small intestine
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Developmental changes in glycolipids and synchronized expression of nutrient transporters in the mouse small intestine

机译:小鼠小肠中糖脂的发育变化和营养转运蛋白的同步表达

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Small intestinal epithelial cells are rich in characteristic glycosphingolipids (GSLs) that are composed of phytosphingosine and l-hydroxy fatty acid, but the physiological roles of GSLs in the small intestine remain unclear. Here, we report the developmental changes in GSL composition in the mouse small intestine (duodenum through ileum) and their relationship with the temporal mRNA expression of nutrient transporters. Up to 2 weeks after birth, the major GSLs were hexosylceramide (HexCer), GM3, GM1 and GD1a. After 2 weeks of age, HexCer and asialo GM1 became the major GSLs. The ceramide moiety of both HexCer and asialo GM1 was composed mainly of phytosphingosine and l-hydroxy fatty acid, from birth through adulthood. Immunohistochemically, GM1 localized in the cytoplasm, and asialo GM1 localized exclusively in the apical microvillous membrane of small intestinal epithelial cells. The shift from sialylated GSLs to asialo GM1 was achieved by the combinational and tissue-specific transcriptional down-regulation of GM3 synthase and GM1-o-galactosidase at around 2 weeks of age. The temporal mRNA expression of various nutrient transporters also showed significant changes at around 2 weeks of age, including the up-regulation of the sodium/glucose cotransporter and the oligopeptide transporter, as well as the down-regulation of amino acid transporters. These synchronized changes in the mRNA expression of nutrient transporters with GSL composition during suckling-to-weanling transition suggest the contributions of GSLs to morphologic and functional development in the membrane of mouse small intestinal epithelial cells.
机译:小肠上皮细胞富含由植物鞘氨醇和1-羟基脂肪酸组成的特征性鞘糖脂(GSL),但尚不清楚GSL在小肠中的生理作用。在这里,我们报告小鼠小肠(十二指肠到回肠)中GSL组成的发育变化及其与营养转运蛋白的瞬时mRNA表达的关系。出生后2周内,主要的GSL是己糖神经酰胺(HexCer),GM3,GM1和GD1a。在2周龄后,HexCer和无人驾驶GM1成为主要的GSL。从出生到成年,HexCer和无唾液酸GM1的神经酰胺部分主要由植物鞘氨醇和1-羟基脂肪酸组成。在免疫组织化学上,GM1位于细胞质中,而无唾液酸GM1仅位于小肠上皮细胞的顶微绒毛膜中。在2周龄左右,GM3合酶和GM1-o-半乳糖苷酶的结合和组织特异性转录下调可实现唾液酸化GSL向去唾液酸GM1的转变。各种营养转运蛋白的时间mRNA表达在2周龄左右也显示出显着变化,包括钠/葡萄糖共转运蛋白和寡肽转运蛋白的上调,以及氨基酸转运蛋白的下调。在从乳到断奶的过渡过程中,营养转运蛋白与GSL组成的mRNA表达的这些同步变化表明GSL对小鼠小肠上皮细胞膜的形态和功能发育的贡献。

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