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GABAA受体亚基的组装决定了极化细胞中的分选和定位。

Assembly of GABAA receptor subunits determines sorting and localization in polarized cells.

作者信息

Perez-Velazquez J L, Angelides K J

机构信息

Department of Cell Biology, Baylor College of Medicine, Houston, Texas 77030.

出版信息

Nature. 1993 Feb 4;361(6411):457-60. doi: 10.1038/361457a0.

Abstract

The GABAA receptor, the principal inhibitory receptor in the CNS, is distributed on cell bodies, dendrites, and in some cells at axon hillocks and presynaptic terminals. The dendritic distribution is crucial for shunting of excitatory synaptic inputs. Molecular cloning has revealed that the GABAA receptor can be formed by a diverse set of subunits and by separately encoded subunit isoforms, the expression of each of which differs in distinct areas of the central nervous system and during development. Why different genes exist to encode these isoforms is not clear, but may be linked to functional differences. Here we show that assembly of specific isoforms also codes for sorting and localization of the receptor complex. Confocal microscopy and immunoblot analysis of epithelial cells transfected with the complementary DNAs encoding the alpha 1 and beta 1 GABAA receptor subunits and probed with subunit isoform-specific antibodies show that the alpha 1 subunit is targeted to the basolateral surface, and that the beta 1 subunit is sorted to the apical membrane. In cells where alpha 1 and beta 1 isoforms are co-expressed, assembly of the beta 1 with the alpha 1 subunit isoform re-routes the alpha 1 subunit to the apical surface. The ability to assemble complexes of different isoform composition and to target these to specific regions of the cell surface would enable neurons to modulate GABAA receptor distribution and possibly alter the composition of its synapses in response to transcriptional levels of specific subunit isoforms.

摘要

GABAA受体是中枢神经系统中的主要抑制性受体,分布于细胞体、树突以及某些细胞的轴突起始段和突触前终末。树突分布对于分流兴奋性突触输入至关重要。分子克隆研究表明,GABAA受体可由多种亚基以及各自独立编码的亚基异构体组成,其中每个亚基异构体在中枢神经系统的不同区域以及发育过程中的表达都有所不同。目前尚不清楚为何存在不同基因来编码这些异构体,但这可能与功能差异有关。在此我们表明,特定异构体的组装还决定了受体复合物的分选和定位。利用编码α1和β1 GABAA受体亚基的互补DNA转染上皮细胞,并使用亚基异构体特异性抗体进行共聚焦显微镜和免疫印迹分析,结果显示α1亚基靶向基底外侧表面,而β1亚基则被分选至顶端膜。在同时表达α1和β1异构体的细胞中,β1与α1亚基异构体的组装会将α1亚基重新导向顶端表面。能够组装不同异构体组成的复合物并将其靶向细胞表面的特定区域,这将使神经元能够调节GABAA受体的分布,并可能根据特定亚基异构体的转录水平改变其突触的组成。

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