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首页> 外文期刊>Neurochemical research >The AMPA Receptor Subunit GluA1 is Required for CA1 Hippocampal Long-Term Potentiation but is not Essential for Synaptic Transmission
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The AMPA Receptor Subunit GluA1 is Required for CA1 Hippocampal Long-Term Potentiation but is not Essential for Synaptic Transmission

机译:AMPA受体亚单位GLUA1是CA1海马长期增强所必需的,但对突触传输不是必需的

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摘要

AMPA receptors mediate the majority of excitatory glutamatergic transmission in the mammalian brain and are heterotetramers composed of GluA1-4 subunits. Despite genetic studies, the roles of the subunits in synaptic transmission and plasticity remain controversial. To address this issue, we investigated the effects of cell-specific removal of GluA1 in hippocampal CA1 pyramidal neurons using virally-expressed GluA1 shRNA in organotypic slice culture. We show that this shRNA approach produces a rapid, efficient and selective loss of GluA1, and removed>80% of surface GluA1 from synapses. This loss of GluA1 caused a modest reduction (up to 57%) in synaptic transmission and when applied in neurons from GluA3 knock-out mice, a similar small reduction in transmission occurred. Further, we found that loss of GluA1 caused a redistribution of GluA2 to synapses that may compensate functionally for the absence of GluA1. We found that LTP was absent in neurons lacking GluA1, induced either by pairing or by a theta-burst pairing protocol previously shown to induce LTP in GluA1 knock-out mice. Our findings demonstrate a critical role of GluA1 in CA1 LTP, but no absolute requirement for GluA1 in maintaining synaptic transmission. Further, our results indicate that GluA2 homomers can mediate synaptic transmission and can compensate for loss of GluA1.
机译:AMPA受体在哺乳动物脑中介导大部分兴奋性谷氨酸透射率,并且是由Glua1-4亚基组成的异质蛋白。尽管遗传研究,但亚基在突触传递和可塑性中的作用仍存在争议。为了解决这个问题,我们研究了在有机型切片培养中使用病毒表达的Glua1 shRNA在海马CA1金字塔神经元中对细胞特异性去除Glua1的影响。我们表明,这种ShRNA方法产生了快速,有效和选择性的Glua1的丧失,并从突触中取出> 80%的表面glua1。这种Glua1的损失导致突触传递中最大的减少(高达57%),并且当从Glua3敲除小鼠中施用在神经元中时,发生了类似的速度降低。此外,我们发现Glua1的损失导致Glua2的重新分布到可以在功能上进行补偿的突触,以便没有Glua1。我们发现LTP在缺乏Glua1的神经元中不存在,通过配对或通过先前所示的Theta-Burst配对方案诱导诱导LTP在Glua1敲除小鼠中。我们的研究结果表明了Glua1在CA1 LTP中的关键作用,但在维持突触传输方面没有对Glua1的绝对要求。此外,我们的结果表明Glua2素质可以介导突触传递,可以补偿Glua1的损失。

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