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Spatiotemporal Processing Deficits in Female CGG KI Mice Modeling the Fragile X Premutation

机译:女性CGG KI小鼠的时空加工缺陷模型脆弱的X广告

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摘要

The fragile X Premutation is a tandem CGG trinucleotide repeat expansion in the fragile X mental retardation 1 (FMR1) gene between 55 and 200 repeats in length. A CGG knock-in (CGG KI) mouse has been developed that models the neuropathology and cognitive deficits reported in fragile X Premutation carriers. It has been suggested that carriers of the premutation demonstrate a spatiotemporal hypergranularity, or reduced resolution of spatial and temporal processing. A temporal ordering of spatial locations task was used to evaluate the ability of CGG KI mice to process temporal and spatial information with either high or low levels of spatial interference. The results indicate that CGG KI mice showed difficulty performing a spatial novelty detection task when there were high levels of spatial interference, but were able to perform the novelty detection task when there was low spatial interference. These data suggest that CGG KI mice show reduced spatial and temporal resolution that are modulated by the dosage of the Fmr1 gene mutation, such that when behavioral tasks require mice to overcome high levels of either spatial or temporal interference, the CGG KI mice perform increasingly poorly as the CGG repeat length increases.
机译:脆弱的X优先级是串联CGG三核苷酸在脆弱的X心理延迟1(FMR1)基因中的重复膨胀,其长度为55和200重复。已经开发了CGG Kngling-In(CGG KI)鼠标,其模型在脆弱的X优化载体中报告了神经病理学和认知缺陷。有人提出,该优势的载体表明了时尚的血统性,或降低了空间和时间加工的分辨率。空间位置任务的时间顺序用于评估CGG KI小鼠的能力处理具有高或低水平的空间干扰的时间和空间信息。结果表明,当存在高水平的空间干扰时,CGG KI小鼠表明难以在空间干扰水平时进行空间新颖性检测任务,但是当存在低空间干扰时能够执行新颖的检测任务。这些数据表明CGG KI小鼠显示通过FMR1基因突变的剂量调节的减少的空间和时间分辨率,使得当行为任务需要小鼠以克服高水平的空间或时间干扰时,CGG Ki小鼠越来越糟糕随着CGG重复长度的增加。

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