首页> 外文期刊>American Journal of Physiology >Role of cysteine residues in cell surface expression of the human riboflavin transporter-2 (hRFT2) in intestinal epithelial cells
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Role of cysteine residues in cell surface expression of the human riboflavin transporter-2 (hRFT2) in intestinal epithelial cells

机译:半胱氨酸残基在肠上皮细胞中人核黄素转运蛋白-2(HRFT2)细胞表面表达中的作用

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The water-soluble vitamin B2 (riboflavin, RF) is an essential micronutrient for normal cell function and survival. Recent studies have identified a role for the human riboflavin transporter-2 (hRFT2) in normal intestinal RF absorption. However, little is known about the cell biology of this transporter and specifically about the molecular determinant(s) that dictate its cell surface expression in human intestinal epithelial cells. Here we show that the full-length hRFT2 protein fused to green fluorescent protein (GFP) (GFP-hRFT2) is expressed exclusively at the apical membrane domain of Caco-2 cells. COOH-terminal sequence was essential in dictating cell surface expression with a specific role for conserved cysteine residues (C463 and C467). Mutation of C463 and C467 ablated RF uptake, explained by retention of the constructs within the endoplasmic reticulum. Modeling analysis suggested a potential disulfide bridge between C463 and C386. Consistent with this prediction, mutating the C386 site in the context of the full-length transporter resulted in intracellular retention, whereas mutation of another conserved cysteine (C326A) was without effect on hRFT2 targeting. Intracellular trafficking of hRFT2 was also examined and appeared to involve distinct vesicular structures, the motility of vesicles critically dependent on an intact microtubule network. These results demonstrate a potential role for specific cysteine residues in the cell surface expression of the hRFT2 in human intestinal epithelial cells.
机译:水溶性维生素B2(Riboflavin,RF)是正常细胞功能和存活的必要性微量营养素。最近的研究已经确定了人核黄素转运蛋白转运蛋白 - 2(HRFT2)在正常肠道RF吸收中的作用。然而,关于该转运蛋白的细胞生物学知之甚少,并且特别是关于在人肠上皮细胞中规定其细胞表面表达的分子确定剂的细胞生物学。在这里,我们表明,与绿色荧光蛋白(GFP)(GFP-HRFT2)融合的全长HRFT2蛋白仅在Caco-2细胞的顶端膜结构域中表达。 CoOH-末端序列在具有保守半胱氨酸残基的特定作用的细胞表面表达中必需(C463和C467)。 C463和C467烧蚀的RF摄取的突变通过保留内质网内的构建体来解释。建模分析表明C463和C386之间的潜在二硫桥。与该预测一致,在全长转运蛋白的上下文中突变C386位点导致细胞内保留,而另一种保守的半胱氨酸(C326A)的突变没有对HRFT2靶向的影响。还检查了HRFT2的细胞内运输,并且似乎涉及不同的凹形结构,囊泡的动力统治性地依赖于完整的微管网络。这些结果表明了人类肠上皮细胞中HRFT2细胞表面表达中的特异性半胱氨酸残基的潜在作用。

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