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RGS7/Gβ5/R7BP复合物在小脑皮质中的细胞及亚细胞定位

Cellular and Subcellular Localization of the RGS7/Gβ5/R7BP Complex in the Cerebellar Cortex.

作者信息

Aguado Carolina, Orlandi Cesare, Fajardo-Serrano Ana, Gil-Minguez Mercedes, Martemyanov Kirill A, Luján Rafael

机构信息

Synaptic Structure Laboratory, Instituto de Investigación en Discapacidades Neurológicas (IDINE), Departamento Ciencias Médicas, Facultad de Medicina, Universidad Castilla-La Mancha Albacete, Spain.

Department of Neuroscience, The Scripps Research Institute Jupiter, FL, USA.

出版信息

Front Neuroanat. 2016 Nov 30;10:114. doi: 10.3389/fnana.2016.00114. eCollection 2016.

Abstract

A member of regulator of G-protein signaling family, RGS7, is an essential modulator of signaling through GABA receptors. RGS7 functions as a macromolecular complex with type 5 G protein β (Gβ5) and R7 binding protein (R7BP) to control the localization and function of the resultant heterotrimeric complexes. Here, we used co-immunoprecipitation, hybridization, histoblot and immunohistochemical techniques at the light and electron microscopic level to advance understanding of RGS7-Gβ5-R7BP complexes in the central nervous system, focusing on distinct neuronal populations in the cerebellar cortex. Histoblot analysis showed that RGS7, Gβ5 and R7BP proteins were widely expressed in the brain, with mostly an overlapping pattern and showing a high expression level in the molecular layer of the cerebellar cortex. Co-immunoprecipitation experiments established that the RGS7/Gβ5 forms complexes with R7BP in the cerebellum. At the cellular level, RGS7 and R7BP mRNAs were expressed at the highest level in Purkinje cells (PCs) and Golgi cells, and at low levels in granule cells. Immunohistochemistry confirmed that labeling for RGS7, Gβ5 and R7BP were present in the three neuronal populations and concentrated in dendrites and spines. At the electron microscopic level, immunolabeling for RGS7, Gβ5 and R7BP proteins was found both at postsynaptic and presynaptic sites and showed similar distribution patterns. Immunoreactivity for the three proteins was mostly localized along the extrasynaptic plasma membrane of dendritic shafts and spines of PCs and to a lesser extent, in axon terminals (AT) establishing excitatory synapses. Quantitative analysis of immunogold particles for RGS7, Gβ5 and R7BP revealed that they are non-uniformly distributed along the surface of PCs, and show enrichment around excitatory synapses on dendritic spines. We further report that deletion of R7BP in mice reduced the targeting of both RGS7 and Gβ5 to the plasma membrane. Altogether, these data support the existence of macromolecular complexes composed of RGS7-Gβ5-R7BP in PCs. The location at post- and pre-synaptic sites in PCs spines-parallel fiber synapses suggests their involvement in the modulation of glutamatergic neurotransmission in the cerebellar cortex.

摘要

G蛋白信号调节家族成员RGS7是通过GABA受体进行信号传导的重要调节因子。RGS7与5型G蛋白β(Gβ5)和R7结合蛋白(R7BP)形成大分子复合物,以控制所得异源三聚体复合物的定位和功能。在这里,我们使用免疫共沉淀、杂交、组织印迹和免疫组织化学技术,在光学和电子显微镜水平上,来增进对中枢神经系统中RGS7-Gβ5-R7BP复合物的理解,重点关注小脑皮质中不同的神经元群体。组织印迹分析表明,RGS7、Gβ5和R7BP蛋白在脑中广泛表达,大多呈重叠模式,且在小脑皮质分子层中表达水平较高。免疫共沉淀实验证实,RGS7/Gβ5在小脑中与R7BP形成复合物。在细胞水平上,RGS7和R7BP mRNA在浦肯野细胞(PC)和高尔基细胞中表达水平最高,在颗粒细胞中表达水平较低。免疫组织化学证实,RGS7、Gβ5和R7BP的标记存在于这三种神经元群体中,并集中在树突和棘中。在电子显微镜水平上,在突触后和突触前位点均发现了RGS7、Gβ5和R7BP蛋白的免疫标记,且显示出相似的分布模式。这三种蛋白的免疫反应性大多沿着PC树突干和棘的突触外质膜定位,在较小程度上,位于建立兴奋性突触的轴突终末(AT)。对RGS7、Gβ5和R7BP免疫金颗粒的定量分析表明,它们在PC表面分布不均匀,且在树突棘上的兴奋性突触周围富集。我们进一步报道,小鼠中R7BP的缺失降低了RGS7和Gβ5向质膜的靶向性。总之,这些数据支持PC中存在由RGS7-Gβ5-R7BP组成的大分子复合物。PC棘-平行纤维突触中突触后和突触前位点的定位表明它们参与了小脑皮质中谷氨酸能神经传递的调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ad5e/5127842/c86f3f4b8133/fnana-10-00114-g0001.jpg

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