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高亲和力胆碱转运体的跨膜拓扑结构和寡聚体结构。

Transmembrane topology and oligomeric structure of the high-affinity choline transporter.

机构信息

Department of Pharmacology, Faculty of Pharmacy, Keio University, 1-5-30 Shibakoen, Minato-ku, Tokyo, Japan.

出版信息

J Biol Chem. 2012 Dec 14;287(51):42826-34. doi: 10.1074/jbc.M112.405027. Epub 2012 Nov 6.

Abstract

The high-affinity choline transporter CHT1 mediates choline uptake essential for acetylcholine synthesis in cholinergic nerve terminals. CHT1 belongs to the Na(+)/glucose cotransporter family (SLC5), which is postulated to have a common 13-transmembrane domain core; however, no direct experimental evidence for CHT1 transmembrane topology has yet been reported. We examined the transmembrane topology of human CHT1 using cysteine-scanning analysis. Single cysteine residues were introduced into the putative extra- and intracellular loops and probed for external accessibility for labeling with a membrane-impermeable, sulfhydryl-specific biotinylating reagent in intact cells expressing these mutants. The results provide experimental evidence for a topological model of a 13-transmembrane domain protein with an extracellular amino terminus and an intracellular carboxyl terminus. We also constructed a three-dimensional homology model of CHT1 based on the crystal structure of the bacterial Na(+)/galactose cotransporter, which supports our conclusion of CHT1 transmembrane topology. Furthermore, we examined whether CHT1 exists as a monomer or oligomer. Chemical cross-linking induces the formation of a higher molecular weight form of CHT1 on the cell surface in HEK293 cells. Two different epitope-tagged CHT1 proteins expressed in the same cells can be co-immunoprecipitated. Moreover, co-expression of an inactive mutant I89A with the wild type induces a dominant-negative effect on the overall choline uptake activity. These results indicate that CHT1 forms a homo-oligomer on the cell surface in cultured cells.

摘要

高亲和力胆碱转运体 CHT1 介导胆碱摄取,对胆碱能神经末梢中乙酰胆碱的合成至关重要。CHT1 属于 Na(+)/葡萄糖共转运蛋白家族(SLC5),该家族假定具有共同的 13 个跨膜结构域核心;然而,目前尚未有关于 CHT1 跨膜拓扑结构的直接实验证据。我们使用半胱氨酸扫描分析来研究人 CHT1 的跨膜拓扑结构。将单个半胱氨酸残基引入假定的细胞外和细胞内环中,并在表达这些突变体的完整细胞中用膜不可渗透的、巯基特异性生物素化试剂探测其对外侧的可及性。结果为具有细胞外氨基末端和细胞内羧基末端的 13 个跨膜结构域蛋白的拓扑模型提供了实验证据。我们还基于细菌 Na(+)/半乳糖共转运蛋白的晶体结构构建了 CHT1 的三维同源模型,这支持了我们对 CHT1 跨膜拓扑结构的结论。此外,我们还研究了 CHT1 是否存在单体或寡聚体形式。化学交联在 HEK293 细胞的细胞表面诱导 CHT1 形成更高分子量的形式。在同一细胞中表达的两种不同表位标记的 CHT1 蛋白可以被共同免疫沉淀。此外,与野生型共表达无活性突变体 I89A 会对整体胆碱摄取活性产生显性负效应。这些结果表明,CHT1 在培养细胞的细胞表面形成同源寡聚体。

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