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Evidence for multiple AMPA receptor complexes in hippocampal CA1/CA2 neurons

机译:海马CA1 / CA2神经元中多个AMPA受体复合物的证据

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摘要

The AMPA receptor, which is involved in most fast glutamatergic transmission in the mammalian brain and is expressed in most neurons, is made up of four subunits, GluR1–4. In situ hybridzation, immunocytochemistry studies, and single-cell PCR analyses show that the number and type of AMPA receptor subunits expressed vary among neuronal populations and that two to four subunits usually are expressed in each neuron. Neurons that express two or more subunits theoretically could produce multiple pentameric receptor complexes that differ in their subunit compositions, and these complexes could be targeted to different synaptic populations. To determine whether a single neuronal population produces multiple AMPA receptor complexes, we used a preparation of CA1/CA2 hippocampal pyramidal neurons and immunoprecipitation with subunit-specific antibodies to characterize the receptor complexes. The CA1/CA2 pyramidal neurons express high levels of GluR1–3 and receive multiple excitatory inputs, offering the possibility that distinct receptor complexes may be assembled and expressed selectively at different synaptic populations. Our results suggest the presence of two major populations of AMPA receptor complexes: those made up of GluR1 and GluR2 and those made up of GluR2 and GluR3. Very few complexes contained both GluR1 and GluR3, whereas approximately 8% of the total AMPA receptor complexes was homomeric GluR1. The integrity of the receptor complex was verified by measuring [3H]AMPA binding activity in the immunoprecipitated fractions. These results show that AMPA receptor complexes with different subunit compositions are present in CA1/CA2 pyramidal neurons and suggest an additional mechanism to regulate receptor expression in neurons.
机译:AMPA受体与哺乳动物脑中最快速的谷氨酸能传递有关,并在大多数神经元中表达,由四个亚基GluR1-4组成。原位杂交,免疫细胞化学研究和单细胞PCR分析表明,表达的AMPA受体亚基的数量和类型在神经元群体之间有所不同,每个神经元通常表达2至4个亚基。理论上,表达两个或多个亚基的神经元可能会产生多个亚基组成不同的五聚体受体复合物,并且这些复合物可以靶向不同的突触群体。为了确定单个神经元群体是否产生多个AMPA受体复合物,我们使用了CA1 / CA2海马锥体神经元的制备方法,并用亚基特异性抗体进行了免疫沉淀,以表征受体复合物。 CA1 / CA2锥体神经元表达高水平的GluR1-3,并接受多种兴奋性输入,这提供了不同的受体复合物可以组装并在不同的突触群体中选择性表达的可能性。我们的结果表明存在两个主要的AMPA受体复合物群体:由GluR1和GluR2组成以及由GluR2和GluR3组成。很少有复合物同时含有GluR1和GluR3,而总AMPA受体复合物中约8%是同质GluR1。受体复合物的完整性通过测量免疫沉淀级分中的[3H] AMPA结合活性来验证。这些结果表明,具有不同亚基组成的AMPA受体复合物存在于CA1 / CA2锥体神经元中,并提出了调节神经元受体表达的其他机制。

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