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半胱氨酸残基在葡萄糖转运蛋白-GLUT1介导的转运及转运抑制中的作用。

The role of cysteine residues in glucose-transporter-GLUT1-mediated transport and transport inhibition.

作者信息

Wellner M, Monden I, Keller K

机构信息

Institut für Pharmakologie, Freien Universität Berlin, Federal Republic of Germany.

出版信息

Biochem J. 1994 May 1;299 ( Pt 3)(Pt 3):813-7. doi: 10.1042/bj2990813.

Abstract

The role of cysteine residues in transport function of the glucose transporter GLUT1 was investigated by a mutagenesis-expression strategy. Each of the six cysteine residues was individually replaced by site-directed mutagenesis. Expression of the heterologous wild-type or mutant glucose transporters and transport measurements at two hexose concentrations (50 microM and 5 mM) were undertaken in Xenopus oocytes. The catalytic activity of GLUT1 was retained, despite substitution of each single cysteine residue, which indicated that no individual residue is essential for hexose transport. This finding questions the involvement of oligomerization or intramolecular stabilization by a single disulphide bond as a prerequisite for transporter activation under basal conditions. Application of the impermeant mercurial thiol-group-reactive reagent p-chloromercuribenzenesulphonate (pCMBS) to the external or internal surface of plasma membrane demonstrated that cysteine-429, within the sixth external loop, and cysteine-207, at the beginning of the large intracellular loop which connects transmembrane segments 6 and 7, are the residues which are involved in transport inhibition by impermeant thiol-group-reactive reagents from either side of the cell. These data support the predicted membrane topology of the transport protein by transport measurements. If residues other than the cysteines at positions 429 or 207 are exposed to either side of the plasma membrane by conformational changes, they do not contribute to the transport inhibition by pCMBS. Application of pCMBS to one side of the plasma membrane also inhibited transport from the opposite direction, most likely due to the hindrance of sugar-induced interconversion of transporter conformation.

摘要

通过诱变 - 表达策略研究了半胱氨酸残基在葡萄糖转运蛋白GLUT1转运功能中的作用。利用定点诱变技术分别替换六个半胱氨酸残基中的每一个。在非洲爪蟾卵母细胞中进行异源野生型或突变型葡萄糖转运蛋白的表达以及在两种己糖浓度(50微摩尔和5毫摩尔)下的转运测量。尽管单个半胱氨酸残基被替换,但GLUT1的催化活性得以保留,这表明没有单个残基对于己糖转运是必不可少的。这一发现对寡聚化或通过单个二硫键进行分子内稳定作用作为基础条件下转运蛋白激活的先决条件这一观点提出了质疑。将不可渗透的汞基巯基反应试剂对氯汞苯磺酸盐(pCMBS)应用于质膜的外表面或内表面表明,第六个外环内的半胱氨酸 - 429以及连接跨膜片段6和7的大细胞内环起始处的半胱氨酸 - 207是参与来自细胞两侧的不可渗透巯基反应试剂抑制转运的残基。这些数据通过转运测量支持了转运蛋白预测的膜拓扑结构。如果429或207位以外的半胱氨酸残基通过构象变化暴露于质膜的任一侧,它们不会导致pCMBS对转运的抑制。将pCMBS应用于质膜的一侧也会抑制来自相反方向的转运,这很可能是由于糖诱导的转运蛋白构象相互转化受到阻碍。

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