Larson John, Jessen Ruth E, Kim Daniel, Fine Ananda-Kriiya S, du Hoffmann Johann
Psychiatric Institute, Department of Psychiatry, College of Medicine, University of Illinois, Chicago, Illinois 60612, USA.
J Neurosci. 2005 Oct 12;25(41):9460-9. doi: 10.1523/JNEUROSCI.2638-05.2005.
Synaptic function and plasticity were studied in mice lacking the fragile X mental retardation protein (FMRP), a model for the fragile X mental retardation syndrome. Associational connections were studied in slices of anterior piriform (olfactory) cortex, and Schaffer-commissural synapses were studied in slices of hippocampus. Knock-out (KO) mice lacking FMRP were compared with congenic C57BL/6J wild-type (WT) controls. Input-output curves and paired-pulse plasticity were not significantly altered in KO compared with WT mice in either the olfactory cortex or hippocampus. Long-term potentiation (LTP) induced by theta burst stimulation in the anterior piriform cortex was normal in KO mice aged < 6 months but was impaired in KO mice aged > 6 months. The deficit in LTP was significant in mice aged 6-12 months and more pronounced in mice aged 12-18 months. Similar differences between WT and KO mice were seen whether LTP was induced in the presence or absence of a GABAA receptor blocker. Postsynaptic responses to patterned burst stimulation in KO mice showing impaired LTP were not significantly different from those in WT mice, suggesting that the LTP deficit was not caused by alterations in circuit properties. No differences in hippocampal LTP were observed in WT and KO mice at any ages. The results indicate that FMRP deficiency is associated with an age-dependent and region-selective impairment in long-term synaptic plasticity.
在缺乏脆性X智力低下蛋白(FMRP)的小鼠中研究了突触功能和可塑性,该小鼠是脆性X智力低下综合征的模型。在前梨状(嗅觉)皮质切片中研究了联合连接,在海马切片中研究了Schaffer-连合突触。将缺乏FMRP的基因敲除(KO)小鼠与同基因C57BL/6J野生型(WT)对照进行比较。与WT小鼠相比,KO小鼠在嗅觉皮质或海马中的输入-输出曲线和双脉冲可塑性均无显著改变。在小于6个月龄的KO小鼠中,前梨状皮质中由θ波爆发刺激诱导的长时程增强(LTP)正常,但在大于6个月龄的KO小鼠中受损。LTP缺陷在6-12个月龄的小鼠中显著,在12-18个月龄的小鼠中更明显。无论是否存在GABAA受体阻滞剂诱导LTP,WT和KO小鼠之间都观察到类似差异。在显示LTP受损的KO小鼠中,对模式化爆发刺激的突触后反应与WT小鼠无显著差异,表明LTP缺陷不是由电路特性改变引起的。在任何年龄的WT和KO小鼠中均未观察到海马LTP的差异。结果表明,FMRP缺乏与长期突触可塑性的年龄依赖性和区域选择性损伤有关。