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首页> 外文期刊>Human Molecular Genetics >A mouse model for creatine transporter deficiency reveals early onset cognitive impairment and neuropathology associated with brain aging
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A mouse model for creatine transporter deficiency reveals early onset cognitive impairment and neuropathology associated with brain aging

机译:肌酸转运蛋白缺乏的小鼠模型揭示了与脑老化相关的早期发病认知障碍和神经病理学

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Mutations in the creatine (Cr) transporter (CrT) gene lead to cerebral creatine deficiency syndrome-1 (CCDS1), an X-linked metabolic disorder characterized by cerebral Cr deficiency causing intellectual disability, seizures, movement and autistic-like behavioural disturbances, language and speech impairment. Since no data are available about the neural and molecular underpinnings of this disease, we performed a longitudinal analysis of behavioural and pathological alterations associated with CrT deficiency in a CCDS1 mouse model. We found precocious cognitive and autistic-like defects, mimicking the early key features of human CCDS1. Moreover, mutant mice displayed a progressive impairment of short and long-term declarative memory denoting an early brain aging. Pathological examination showed a prominent loss of GABAergic synapses, marked activation of microglia, reduction of hippocampal neurogenesis and the accumulation of autofluorescent lipofuscin. Our data suggest that brain Cr depletion causes both early intellectual disability and late progressive cognitive decline, and identify novel targets to design intervention strategies aimed at overcoming brain CCDS1 alterations.
机译:肌酸(Cr)转运​​蛋白(CRT)基因中的突变导致脑肌酸缺乏综合征-1(CCDS1),其特征在于脑CR缺乏的X型代谢紊乱,引起智力残疾,癫痫发作,运动和自闭症的行为干扰,语言和讲话障碍。由于没有关于这种疾病的神经和分子底划的数据,因此我们对CCDS1小鼠模型中的CRT缺乏进行了行为和病理改变进行了纵向分析。我们发现了早期的认知和自闭症缺陷,模仿人类CCDS1的早期关键特征。此外,突变小鼠的逐步损害表现出一种表示早期脑老化的短期和长期声明记忆。病理检查显示出突出的加布格突触突变,显着激活了小胶质细胞,降低海马神经发生以及自发荧光脂血清的积累。我们的数据表明,大脑CR耗尽导致早期智力残疾和晚期逐步认知下降,并确定设计干预策略的新型目标,旨在克服大脑的变化。

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