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四半胱氨酸模体插入多巴胺转运体细胞外结构域。

Insertion of tetracysteine motifs into dopamine transporter extracellular domains.

机构信息

Interdisciplinary Graduate Program, University of Massachusetts Medical School, Worcester, Massachusetts, United States of America.

出版信息

PLoS One. 2010 Feb 9;5(2):e9113. doi: 10.1371/journal.pone.0009113.

Abstract

The neuronal dopamine transporter (DAT) is a major determinant of extracellular dopamine (DA) levels and is the primary target for a variety of addictive and therapeutic psychoactive drugs. DAT is acutely regulated by protein kinase C (PKC) activation and amphetamine exposure, both of which modulate DAT surface expression by endocytic trafficking. In order to use live imaging approaches to study DAT endocytosis, methods are needed to exclusively label the DAT surface pool. The use of membrane impermeant, sulfonated biarsenic dyes holds potential as one such approach, and requires introduction of an extracellular tetracysteine motif (tetraCys; CCPGCC) to facilitate dye binding. In the current study, we took advantage of intrinsic proline-glycine (Pro-Gly) dipeptides encoded in predicted DAT extracellular domains to introduce tetraCys motifs into DAT extracellular loops 2, 3, and 4. [(3)H]DA uptake studies, surface biotinylation and fluorescence microscopy in PC12 cells indicate that tetraCys insertion into the DAT second extracellular loop results in a functional transporter that maintains PKC-mediated downregulation. Introduction of tetraCys into extracellular loops 3 and 4 yielded DATs with severely compromised function that failed to mature and traffic to the cell surface. This is the first demonstration of successful introduction of a tetracysteine motif into a DAT extracellular domain, and may hold promise for use of biarsenic dyes in live DAT imaging studies.

摘要

神经元多巴胺转运体(DAT)是细胞外多巴胺(DA)水平的主要决定因素,也是各种成瘾性和治疗性精神活性药物的主要靶点。DAT 可被蛋白激酶 C(PKC)激活和安非他命暴露急性调节,这两者均通过内吞作用来调节 DAT 的表面表达。为了使用活体成像方法研究 DAT 的内吞作用,需要有一种方法来专门标记 DAT 的表面池。膜不可渗透的磺化双砷染料的使用具有这种方法的潜力,并且需要引入细胞外四半胱氨酸基序(tetraCys;CCPGCC)以促进染料结合。在本研究中,我们利用预测的 DAT 细胞外结构域中的固有脯氨酸-甘氨酸(Pro-Gly)二肽,将 tetraCys 基序引入 DAT 的细胞外环 2、3 和 4。[(3)H]DA 摄取研究、PC12 细胞表面生物素化和荧光显微镜检查表明,tetraCys 插入 DAT 的第二个细胞外环会产生一种功能性转运体,该转运体可维持 PKC 介导的下调。将 tetraCys 引入细胞外环 3 和 4 会导致 DAT 功能严重受损,无法成熟并转运到细胞表面。这是首次成功将 tetracysteine 基序引入 DAT 细胞外结构域的证明,并且可能有望在活体 DAT 成像研究中使用双砷染料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce66/2817725/aa212d61b09a/pone.0009113.g001.jpg

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