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Synaptic Commitment: Developmentally Regulated Reciprocal Changes in Hippocampal Granule Cell NMDA and AMPA Receptors Over the Lifespan

机译:突触承诺:在整个生命周期中海马颗粒细胞NMDA和AMPA受体的发育调控的相互变化。

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摘要

Synaptic transmission in hippocampal field CA1 is largely N-methyl-d-aspartate receptor (NMDAR) dependent during the early postnatal period. It becomes increasingly mediated by α-amino-3-hydroxy-5-methylisoxazole-4-proprionate (AMPA) receptors until an adult ratio of AMPA to NMDA receptors is achieved. It is shown here that increases in the AMPA receptor (AMPAR)-mediated field potential response continue over the life span of the F-344 rat at the perforant path–granule cell synapse in the dentate gyrus. In contrast, the NMDAR-dependent component of the response decreases with age between 1 and 27 mo, leading to an increase of AMPAR/NMDAR ratio with age. One possible explanation of this age difference is that the AMPAR/NMDAR ratio can be modified by experience. To test the idea that the changed ratio is caused by the old rats' longer lives, an intensive 10-mo period of enrichment treatment was given to a group of animals, beginning at 3 mo of age. Compared with animals housed in standard cages, the enrichment treatment did not alter the glutamatergic response ratio measured with field potential recording methods. These data provide support for the conclusion that the observed change with age is developmentally regulated rather than experience dependent. Given the role of the NMDAR in synaptic plasticity, these changes suggest a progressive commitment of perforant path synapses to particular weights over the life span. One possible implication of this effect includes preservation of selected memories, ultimately at the expense of a reduced capacity to store new information.
机译:在产后早期,海马CA1区的突触传递很大程度上依赖于N-甲基-d-天冬氨酸受体(NMDAR)。直到达到AMPA与NMDA受体的成年比例为止,它越来越受到α-氨基-3-羟基-5-甲基异恶唑-4-丙酸酸酯(AMPA)受体的介导。结果表明,在F-344大鼠的整个生命周期中,在齿状回的穿孔路径-颗粒细胞突触中,AMPA受体(AMPAR)介导的场电势响应持续增加。相反,响应的NMDAR依赖性成分随年龄在1至27 mo之间而降低,导致AMPAR / NMDAR比率随年龄而增加。这种年龄差异的一种可能解释是AMPAR / NMDAR的比率可以根据经验进行修改。为了检验这种比率变化是由老年大鼠的寿命延长引起的想法,从3月龄开始,对一组动物进行了为期10个月的强化浓缩治疗。与标准笼子中的动物相比,富集处理不会改变用场电势记录法测得的谷氨酸能反应比。这些数据为以下结论提供了支持:观察到的年龄变化是受发育调节的,而不是依赖经验的。考虑到NMDAR在突触可塑性中的作用,这些变化表明穿孔路径突触对生命中特定重量的逐步承诺。这种影响的一个可能含义是保留选定的存储器,最终以降低存储新信息的能力为代价。

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