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首页> 外文期刊>American Journal of Physiology >Sorting of rat liver and ileal sodium-dependent bile acid transporters in polarized epithelial cells.
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Sorting of rat liver and ileal sodium-dependent bile acid transporters in polarized epithelial cells.

机译:极化上皮细胞中大鼠肝脏和回肠钠依赖性胆汁酸转运蛋白的分选。

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摘要

The rat ileal apical Na+-dependent bile acid transporter (ASBT) and the liver Na+-taurocholate cotransporting polypeptide (Ntcp) are members of a new family of anion transporters. These transport proteins share limited sequence homology and almost identical predicted secondary structures but are localized to the apical surface of ileal enterocytes and the sinusoidal surface of hepatocytes, respectively. Stably transfected Madin-Darby canine kidney (MDCK) cells appropriately localized wild-type ASBT and Ntcp apically and basolaterally as assessed by functional activity and immunocytochemical localization studies. Truncated and chimeric transporters were used to determine the functional importance of the cytoplasmic tail in bile acid transport activity and membrane localization. Two cDNAs were created encoding a truncated transporter in which the 56-amino-acid COOH-terminal tail of Ntcp was removed or substituted with an eight-amino-acid epitope FLAG. For both mutants there was some loss of fidelity in basolateral sorting in that approximately 75% of each protein was delivered to the basolateral surface compared with approximately 90% of the wild-type Ntcp protein. In contrast, deletion of the cytoplasmic tail of ASBT led to complete loss of transport activity and sorting to the apical membrane. An Ntcp chimera in which the 56-amino-acid COOH-terminal tail of Ntcp was replaced with the 40-amino-acid cytoplasmic tail of ASBT was largely redirected (82.4 +/- 3.9%) to the apical domain of stably transfected MDCK cells, based on polarity of bile acid transport activity and localization by confocal immunofluorescence microscopy. These results indicate that a predominant signal for sorting of the Ntcp protein to the basolateral domain is located in a region outside of the cytoplasmic tail. These studies have further shown that a novel apical sorting signal is localized to the cytoplasmic tail of ASBT and that it is transferable and capable of redirecting a protein normally sorted to the basolateral surface to the apical domain of MDCK cells.
机译:大鼠回肠顶端Na +依赖胆汁酸转运蛋白(ASBT)和肝脏Na +-牛磺胆酸盐共转运多肽(Ntcp)是新的阴离子转运蛋白家族的成员。这些转运蛋白共享有限的序列同源性和几乎相同的预测二级结构,但分别位于回肠肠细胞的顶表面和肝细胞的正弦表面。通过功能活性和免疫细胞化学定位研究评估,稳定转染的Madin-Darby犬肾(MDCK)细胞在顶端和基底外侧适当定位了野生型ASBT和Ntcp。截短的和嵌合的转运蛋白用于确定胆汁酸转运活性和膜定位中细胞质尾巴的功能重要性。创建了两个编码截短的转运蛋白的cDNA,其中Ntcp的56个氨基酸的COOH末端尾巴被去除或被一个8个氨基酸的表位FLAG取代。对于这两个突变体,在基底外侧分选中保真度都有一些损失,因为每种蛋白质的大约75%被递送至基底外侧表面,而野生型Ntcp蛋白质大约为90%。相反,ASBT的细胞质尾巴的缺失导致运输活性的完全丧失和对顶膜的分选。 Ntcp嵌合体,其中Ntcp的56个氨基酸的COOH末端尾巴被ASBT的40个氨基酸的细胞质尾巴替代,被大幅重定向(82.4 +/- 3.9%)到稳定转染的MDCK细胞的顶端结构域,基于胆汁酸转运活性的极性和共聚焦免疫荧光显微镜下的定位。这些结果表明,用于将Ntcp蛋白分选到基底外侧结构域的主要信号位于胞质尾部以外的区域。这些研究进一步表明,新的根尖分选信号位于ASBT的细胞质尾部,并且是可转移的,并且能够将通常分拣到基底外侧表面的蛋白质重定向到MDCK细胞的根尖结构域。

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