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在多重T迷宫中,小鼠海马体中含GABAB1而非含GABAB2亚基的受体复合物水平与记忆提取过程平行。

Mouse hippocampal GABAB1 but not GABAB2 subunit-containing receptor complex levels are paralleling retrieval in the multiple-T-maze.

作者信息

Falsafi Soheil K, Ghafari Maryam, Miklósi András G, Engidawork Ephrem, Gröger Marion, Höger Harald, Lubec Gert

机构信息

Department of Pediatrics, Medical University of Vienna Vienna, Austria.

Department of Pharmacology and Clinical Pharmacy, School of Pharmacy, College of Health Sciences, Addis Ababa University Addis Ababa, Ethiopia.

出版信息

Front Behav Neurosci. 2015 Oct 19;9:276. doi: 10.3389/fnbeh.2015.00276. eCollection 2015.

Abstract

GABAB receptors are heterodimeric G-protein coupled receptors known to be involved in learning and memory. Although a role for GABAB receptors in cognitive processes is evident, there is no information on hippocampal GABAB receptor complexes in a multiple T maze (MTM) task, a robust paradigm for evaluation of spatial learning. Trained or untrained (yoked control) C57BL/6J male mice (n = 10/group) were subjected to the MTM task and sacrificed 6 h following their performance. Hippocampi were taken, membrane proteins extracted and run on blue native PAGE followed by immunoblotting with specific antibodies against GABAB1, GABAB1a, and GABAB2. Immunoprecipitation with subsequent mass spectrometric identification of co-precipitates was carried out to show if GABAB1 and GABAB2 as well as other interacting proteins co-precipitate. An antibody shift assay (ASA) and a proximity ligation assay (PLA) were also used to see if the two GABAB subunits are present in the receptor complex. Single bands were observed on Western blots, each representing GABAB1, GABAB1a, or GABAB2 at an apparent molecular weight of approximately 100 kDa. Subsequently, densitometric analysis revealed that levels of GABAB1 and GABAB1a but not GABAB2- containing receptor complexes were significantly higher in trained than untrained groups. Immunoprecipitation followed by mass spectrometric studies confirmed the presence of GABAB1, GABAB2, calcium calmodulin kinases I and II, GluA1 and GluA2 as constituents of the complex. ASA and PLA also showed the presence of the two subunits of GABAB receptor within the complex. It is shown that increased levels of GABAB1 subunit-containing complexes are paralleling performance in a land maze.

摘要

GABAB受体是异二聚体G蛋白偶联受体,已知其参与学习和记忆。尽管GABAB受体在认知过程中的作用很明显,但在多T迷宫(MTM)任务(一种评估空间学习的强大范式)中,关于海马体GABAB受体复合物的信息却尚无报道。将经过训练或未经训练(配对对照)的C57BL/6J雄性小鼠(每组n = 10)进行MTM任务,并在其完成任务后6小时处死。取出海马体,提取膜蛋白,进行蓝色非变性聚丙烯酰胺凝胶电泳,然后用针对GABAB1、GABAB1a和GABAB2的特异性抗体进行免疫印迹。进行免疫沉淀并随后通过质谱鉴定共沉淀,以显示GABAB1和GABAB2以及其他相互作用蛋白是否共沉淀。还使用了抗体迁移分析(ASA)和邻近连接分析(PLA)来观察两种GABAB亚基是否存在于受体复合物中。在蛋白质印迹上观察到单条带,每条带分别代表表观分子量约为100 kDa的GABAB1、GABAB1a或GABAB2。随后,光密度分析显示,与未训练组相比,训练组中含有GABAB1和GABAB1a但不含GABAB2的受体复合物水平显著更高。免疫沉淀后进行质谱研究证实,GABAB1、GABAB2、钙调蛋白激酶I和II、GluA1和GluA2作为复合物的组成成分存在。ASA和PLA也显示复合物中存在GABAB受体的两个亚基。结果表明,含有GABAB1亚基的复合物水平增加与陆地迷宫中的表现平行。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b02d/4609755/4a67836806ad/fnbeh-09-00276-g0001.jpg

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