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需要两个N-连接聚糖来维持MDCK II细胞中胆盐输出泵(ABCB11)的转运活性。

Two N-linked glycans are required to maintain the transport activity of the bile salt export pump (ABCB11) in MDCK II cells.

作者信息

Mochizuki Kaori, Kagawa Tatehiro, Numari Asano, Harris Matthew J, Itoh Johbu, Watanabe Norihito, Mine Tetsuya, Arias Irwin M

机构信息

Department of Internal Medicine, Tokai University School of Medicine, Bohseidai, Isehara, Kanagawa 259-1193, Japan.

出版信息

Am J Physiol Gastrointest Liver Physiol. 2007 Mar;292(3):G818-28. doi: 10.1152/ajpgi.00415.2006. Epub 2006 Nov 2.

Abstract

The aim of this study was to determine the role of N-linked glycosylation in protein stability, intracellular trafficking, and bile acid transport activity of the bile salt export pump [Bsep (ATP-binding cassette B11)]. Rat Bsep was fused with yellow fluorescent protein, and the following mutants, in which Asn residues of putative glycosylation sites (Asn(109), Asn(116), Asn(122), and Asn(125)) were sequentially replaced with Gln, were constructed by site-directed mutagenesis: single N109Q, double N109Q + N116Q, triple N109Q + N116Q + N122Q, and quadruple N109Q + N116Q + N122Q + N125Q. Immunoblot and glycosidase cleavage analysis demonstrated that each site was glycosylated. Removal of glycans decreased taurocholate transport activity as determined in polarized MDCK II cells. This decrease resulted from rapid decay of the mutant Bsep protein; biochemical half-lives were 3.76, 3.65, 3.24, 1.35, and 0.52 h in wild-type, single-mutant, double-mutant, triple-mutant, and quadruple-mutant cells, respectively. Wild-type and single- and double-mutant proteins were distributed exclusively along the apical membranes, whereas triple- and quadruple-mutant proteins remained intracellular. MG-132 but not bafilomycin A(1) extended the half-life, suggesting a role for the proteasome in Bsep degradation. To determine whether a specific glycosylation site or the number of glycans was critical for protein stability, we studied the protein expression of combinations of N-glycan-deficient mutants and observed that Bsep with one glycan was considerably unstable compared with Bsep harboring two or more glycans. In conclusion, at least two N-linked glycans are required for Bsep protein stability, intracellular trafficking, and function in the apical membrane.

摘要

本研究的目的是确定N-连接糖基化在胆盐输出泵[Bsep(ATP结合盒B11)]的蛋白质稳定性、细胞内运输和胆汁酸转运活性中的作用。将大鼠Bsep与黄色荧光蛋白融合,并通过定点诱变构建以下突变体,其中假定糖基化位点(Asn(109)、Asn(116)、Asn(122)和Asn(125))的Asn残基依次被Gln取代:单突变体N109Q、双突变体N109Q + N116Q、三突变体N109Q + N116Q + N122Q和四突变体N109Q + N116Q + N122Q + N125Q。免疫印迹和糖苷酶切割分析表明每个位点都被糖基化。如在极化的MDCK II细胞中所测定的,聚糖的去除降低了牛磺胆酸盐的转运活性。这种降低是由于突变体Bsep蛋白的快速降解所致;野生型、单突变体、双突变体、三突变体和四突变体细胞中的生化半衰期分别为3.76、3.65、3.24、1.35和0.52小时。野生型以及单突变体和双突变体蛋白仅沿顶端膜分布,而三突变体和四突变体蛋白则保留在细胞内。MG-132而非巴弗洛霉素A(1)延长了半衰期,提示蛋白酶体在Bsep降解中起作用。为了确定特定的糖基化位点或聚糖数量对蛋白质稳定性是否至关重要,我们研究了N-聚糖缺陷突变体组合的蛋白质表达,并观察到与具有两个或更多聚糖的Bsep相比,具有一个聚糖的Bsep相当不稳定。总之,Bsep蛋白的稳定性、细胞内运输以及在顶端膜中的功能至少需要两个N-连接聚糖。

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