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甘氨酸转运体亚型在上皮细胞和神经元细胞中的极化分布。

Polarized distribution of glycine transporter isoforms in epithelial and neuronal cells.

作者信息

Poyatos I, Ruberti F, Martínez-Maza R, Giménez C, Dotti C G, Zafra F

机构信息

Centro de Biología Molecular "Severo Ochoa," Facultad de Ciencias, Universidad Autónoma de Madrid, Consejo Superior de Investigaciones Científicas, Madrid, 28049, Spain.

出版信息

Mol Cell Neurosci. 2000 Jan;15(1):99-111. doi: 10.1006/mcne.1999.0807.

Abstract

Asymmetrical distribution of Na(+)- and Cl(-)-dependent neurotransmitter transporters on the cell surface of polarized cells seems to be a generalized feature in this gene family. In the present study we analyzed the subcellular distribution of the various isoforms of the glycine transporters GLYT1 and GLYT2 after heterologous expression in polarized MDCK cells and in hippocampal neurons. Our results indicate that glycine transporters are asymmetrically distributed in an isoform- and cell-type-specific manner. GLYT1b is localized in the basolateral and somatodendritic domains of MDCK cells and neurons, respectively. However, GLYT1a is somatodendritic in neurons but is predominantly expressed in the apical surface of MDCK cells. The two isoforms of GLYT2 (GLYT2a and GLYT2b) are found at the apical surface in epithelial cells but are uniformly distributed in neurons. By using site-directed mutagenesis we have been able to identify signals for basolateral/somatodendritic localization in the amino-terminal region of GLYT1 and in two dileucine motifs located in the carboxyl tail of this protein. These results contribute to defining the mechanisms of asymmetrical distribution of transporters on the cell surface of polarized cells.

摘要

在极化细胞的细胞表面,Na⁺和Cl⁻依赖性神经递质转运体的不对称分布似乎是该基因家族的一个普遍特征。在本研究中,我们分析了甘氨酸转运体GLYT1和GLYT2的各种同工型在极化的MDCK细胞和海马神经元中异源表达后的亚细胞分布。我们的结果表明,甘氨酸转运体以同工型和细胞类型特异性的方式不对称分布。GLYT1b分别定位于MDCK细胞的基底外侧结构域和神经元的树突体结构域。然而,GLYT1a在神经元中位于树突体,但主要在MDCK细胞的顶端表面表达。GLYT2的两种同工型(GLYT2a和GLYT2b)在上皮细胞的顶端表面被发现,但在神经元中均匀分布。通过使用定点诱变,我们已经能够在GLYT1的氨基末端区域以及位于该蛋白羧基尾部的两个双亮氨酸基序中鉴定出基底外侧/树突体定位信号。这些结果有助于确定转运体在极化细胞表面不对称分布的机制。

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