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Sex Differences in Long-Term Potentiation at Temporoammonic-CA1 Synapses: Potential Implications for Memory Consolidation

机译:在临时性CA1突触的长期增强中的性别差异:记忆整合的潜在影响。

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摘要

Sex differences in spatial memory have long been observed in humans, non-human primates and rodents, but the underlying cellular and molecular mechanisms responsible for these differences remain obscure. In the present study we found that adolescent male rats outperformed female rats in 7 d and 28 d retention probes, but not in learning trials and immediate probes, in the Morris water maze task. Male rats also had larger long-term potentiation (LTP) at hippocampal temproammonic-CA1 (TA-CA1) synapses, which have been implicated to play a key role in place field and memory consolidation, when protocols designed to elicit late-stage LTP (LLTP) were used. Interestingly, the ratio of evoked AMPA/NMDA currents was found to be smaller at TA-CA1 synapses in male rats compared to female rats. Protein biotinylation experiments showed that male rats expressed more surface GluN1 receptors in hippocampal CA1 stratum lacunosum-moleculare (SLM) than female rats, although GluA1 expression was also slightly higher in male rats. Taken together, our results suggest that differences in the expression of AMPA and NMDA receptors may affect LTP expression at TA-CA1 synapses in adolescent male and female rats, and thus possibly contribute to the observed sex difference in spatial memory.
机译:在人类,非人类灵长类动物和啮齿动物中,长期以来观察到空间记忆的性别差异,但是造成这些差异的潜在细胞和分子机制仍然不清楚。在本研究中,我们发现,在莫里斯水迷宫任务中,青春期雄性大鼠在7天和28天保留探针中的性能优于雌性大鼠,但在学习试验和即时探针中却没有。雄性大鼠在海马体temproammonic-CA1(TA-CA1)突触处也具有较大的长期增强(LTP),当设计旨在引发晚期LTP的方案时,这暗示其在位场和记忆巩固中起关键作用( LLTP)。有趣的是,与雌性大鼠相比,雄性大鼠在TA-CA1突触中诱发的AMPA / NMDA电流比率较小。蛋白质生物素化实验显示,雄性大鼠在海马CA1腔隙层分子(SLM)中表达的表面GluN1受体比雌性大鼠更多,尽管GluA1的表达在雄性大鼠中也略高。两者合计,我们的结果表明,AMPA和NMDA受体表达的差异可能会影响雌雄成年大鼠TA-CA1突触处LTP的表达,因此可能有助于观察到的空间记忆性别差异。

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