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Early development of aberrant synaptic plasticity in a mouse model of Huntington's disease

机译:亨廷顿舞蹈症小鼠模型中异常突触可塑性的早期发展

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Huntington's disease (HD) is a fatal neurodegenerative disorder characterized by progressive motor, psychiatric and cognitive decline. Marked neuronal loss occurs in the cortex and striatum. HD is inherited in an autosomal dominant fashion and caused by a trinucleotide repeat expansion (CAG) in the gene encoding the protein huntingtin. Predictive genetic testing has revealed early cognitive deficits in asymptomatic gene carriers at a time when there is little evidence for cell death, suggesting that impaired cognition results from a cellular or synaptic deficit, such as aberrant synaptic plasticity. Altered hippocampal long-term potentiation has been reported in mouse models of HD; however, the relationship between synaptic dysfunction and phenotype progression has not previously been characterized. We examined the age-dependency of aberrant hippocampal synaptic plasticity in the R6/1 mouse model of HD. Long-term depression (LTD) is a developmentally regulated form of plasticity, which normally declines by early adulthood. Young R6/1 mice follow the same pattern of LTD expression as controls, in that they express LTD in the first weeks of life, and then lose the ability with age. Unlike controls, R6/1 synapses later regain the ability to support LTD. This is associated with nuclear localization of mutant huntingtin, but occurs months prior to the formation of nuclear aggregates. We present the first detailed description of a progressive derailment of a functional neural correlate of cognitive processing in HD.
机译:亨廷顿舞蹈病(HD)是一种致命的神经退行性疾病,其特征是进行性运动,精神病和认知能力下降。明显的神经元丢失发生在皮质和纹状体中。 HD以常染色体显性遗传方式遗传,并由编码亨廷顿蛋白的基因中的三核苷酸重复扩增(CAG)引起。预测性基因测试显示,在几乎没有细胞死亡证据的时候,无症状基因携带者会出现早期认知缺陷,这表明认知障碍是由细胞或突触缺陷引起的,例如异常的突触可塑性。在HD小鼠模型中已报告了海马长期增强作用的改变。但是,突触功能障碍与表型进展之间的关系以前尚未被表征。我们检查了HD R6 / 1小鼠模型中异常海马突触可塑性的年龄依赖性。长期抑郁症(LTD)是一种受发育调节的可塑性,通常在成年初期会下降。年轻的R6 / 1小鼠遵循与对照组相同的LTD表达模式,因为它们在生命的最初几周表达LTD,然后随着年龄的增长而丧失能力。与控件不同,R6 / 1突触后来重新获得了支持LTD的能力。这与突变的亨廷顿蛋白的核定位有关,但是发生在核聚集体形成之前的几个月。我们目前对高清认知处理的功能性神经相关性进行性脱轨的第一个详细描述。

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