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首页> 外文期刊>Neurobiology of learning and memory >Female CGG knock-in mice modeling the fragile X premutation are impaired on a skilled forelimb reaching task
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Female CGG knock-in mice modeling the fragile X premutation are impaired on a skilled forelimb reaching task

机译:熟练的前肢到达任务损害了建模易碎X突变的雌性CGG敲入小鼠

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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. Previous studies have demonstrated that CGG KI mice have spatiotemporal information processing deficits and impaired visuomotor function that worsen with increasing CGG repeat length. Since skilled forelimb reaching requires integration of information from the visual and motor systems, skilled reaching performance could identify potential visuomotor dysfunction in CGG KI mice. To characterize motor deficits associated with the fragile X premutation, 6. month old female CGG KI mice heterozygous for trinucleotide repeats ranging from 70-200. CGG in length were tested for their ability to learn a skilled forelimb reaching task. The results demonstrate that female CGG KI mice show deficits for learning a skilled forelimb reaching task compared to wildtype littermates, and that these deficits worsen with increasing CGG repeat lengths.
机译:脆性X提前突变是脆性X智力低下1(FMR1)基因中的串联CGG三核苷酸重复序列扩展,长度介于55至200个重复之间。已经开发出一种CGG敲入(CGG KI)小鼠,该小鼠可以模拟脆弱X预突变携带者中报道的神经病理学和认知缺陷。先前的研究表明,CGG KI小鼠具有时空信息处理缺陷,并且随着CGG重复长度的增加,其视运动功能受损。由于熟练的前肢接触需要整合来自视觉和运动系统的信息,因此熟练的前伸性能可以识别CGG KI小鼠中潜在的视觉运动功能障碍。为了表征与脆弱的X突变相关的运动缺陷,6个月大的CGG KI雌性小鼠的三核苷酸重复序列杂合为70-200。对CGG长度进行了测试,以了解他们学习熟练的前肢到达任务的能力。结果表明,与野生型同窝仔相比,雌性CGG KI小鼠在学习熟练的前肢到达任务方面显示出缺陷,并且这些缺陷随着CGG重复长度的增加而恶化。

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