首页> 外文期刊>Neuron >Normal CA1 Place Fields but Discoordinated Network Discharge in a &ITFmr1&IT-Null Mouse Model of Fragile X Syndrome
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Normal CA1 Place Fields but Discoordinated Network Discharge in a &ITFmr1&IT-Null Mouse Model of Fragile X Syndrome

机译:正常的CA1放置字段,但在A&ITFMR1和IT-NULL鼠标模型中的易于释放x综合征的网络放电

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摘要

Silence of FMR1 causes loss of fragile X mental retardation protein (FMRP) and dysregulated translation at synapses, resulting in the intellectual disability and autistic symptoms of fragile X syndrome (FXS). Synaptic dysfunction hypotheses for how intellectual disabilities like cognitive inflexibility arise in FXS predict impaired neural coding in the absence of FMRP. We tested the prediction by comparing hippocampus place cells in wild-type and FXS-model mice. Experience-driven CA1 synaptic function and synaptic plasticity changes are excessive in Fmr1-null mice, but CA1 place fields are normal. However, Fmr1-null discharge relationships to local field potential oscillations are abnormally weak, stereotyped , and homogeneous; also, discharge coordination within Fmr1-null place cell networks is weaker and less reliable than wild-type. Rather than disruption of single-cell neural codes, these findings point to invariant tuning of single-cell responses and inadequate discharge coordination within neural ensembles as a pathophysiological basis of cognitive inflexibility in FXS.
机译:FMR1的沉默导致脆弱的X精神迟滞蛋白(FMRP)和突触的失调翻译导致易患疾病X综合征(FXS)的智力残疾和自闭症症状。突触功能障碍假设如何在FXS中产生认知粘度性等知识分子的假设预测缺乏FMRP的神经编码受损。通过将海马置位细胞与野生型和FXS模型小鼠进行比较来测试预测。经验驱动的CA1突触功能和突触可塑性变化在FMR1-NULL小鼠中过量,但CA1 PLACE字段是正常的。然而,与局部场势振荡的FMR1-NULL放电关系异常弱,刻板印象和均匀;此外,FMR1-NULL位置细胞网络内的放电协调较弱,比野生型更可靠。这些发现不是破坏单细胞神经码,而不是破坏单细胞响应的不变调整,并且神经系列内的放电协调不足,作为FXS中认知屈虑可巧的病理生理学基础。

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