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首页> 外文期刊>Human Molecular Genetics >Calcium dysregulation and Cdk5-ATM pathway involved in a mouse model of fragile X- associated tremor/ataxia syndrome
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Calcium dysregulation and Cdk5-ATM pathway involved in a mouse model of fragile X- associated tremor/ataxia syndrome

机译:钙的疾病和CDK5-ATM途径涉及脆弱的X-相关震颤/ ataxia综合征的小鼠模型

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Fragile X-associated tremor/ataxia syndrome (FXTAS) is a neurological disorder that affects premutation carriers with 55200 CGG-expansion repeats (preCGG) in FMR1, presenting with early alterations in neuronal network formation and function that precede neurodegeneration. Whether intranuclear inclusions containing DNA damage response (DDR) proteins are causally linked to abnormal synaptic function, neuronal growth and survival are unknown. In a mouse that harbors a premutation CGG expansion (preCGG), cortical and hippocampal FMRP expression is moderately reduced from birth through adulthood, with greater FMRP reductions in the soma than in the neurite, despite several-fold elevation of Fmr1 mRNA levels. Resting cytoplasmic calcium concentration ([Ca2+](i)) in cultured preCGG hippocampal neurons is chronically elevated, 3-fold compared to Wt; elevated ROS and abnormal glutamatergic responses are detected at 14 DIV. Elevated m-calpain activity and a higher p25/p35 ratio in the cortex of preCGG young adult mice indicate abnormal Cdk5 regulation. In support, the Cdk5 substrate, ATM, is upregulated by 1.5-to 2-fold at P-0 and 6 months in preCGG brain, as is p-Ser(1981)-ATM. Bax: Bcl-2 is 30% higher in preCGG brain, indicating a greater vulnerability to apoptotic activation. Elevated [Ca2+](i), ROS, and DDR signals are normalized with dantrolene. Chronic [Ca2+](i) dysregulation amplifies Cdk5-ATM signaling, possibly linking impaired glutamatergic signaling and DDR to neurodegeneration in preCGG brain.
机译:脆弱的X相关的震颤/共济失调综合征(FXTAS)是一种神经系统疾病,其在FMR1中影响具有55200cgG-膨胀的重复(PHEPGG)的清除载体,呈现出在神经元的早期改变和神经元的功能。是否含有DNA损伤响应(DDR)蛋白质的核内夹杂物与异常突触函数有因果关系,神经元生长和存活是未知的。在捕获CGG扩张(PREPGG)的鼠标中,由于FMR1 mRNA水平的几倍升高,皮质和海马FMRP表达中度从出生时从出生时适度地减少了躯体更大的FMRP减少。培养的细胞质钙浓度([Ca2 +](I))在培养的precggh海马神经元中慢性升高,3倍与wt相比;在14 div中检测到升高的ROS和异常的谷氨酸反应。 M-Calpain的活性升高,PepgGG年轻成人小鼠皮质中的p25 / p35比例较高,表示CDK5调节异常。在载体中,CDK5底物ATM在P-Ser(1981)-ATM中,在P-Ser(1981)中以p-0和6个月高出1.5至2倍。 Bax:Bcl-2在precggg大脑中较高30%,表明对凋亡激活的更大脆弱性。升高的[CA2 +](i),ROS和DDR信号与丹罗琳标准化。慢性[CA2 +](i)失呼量放大CDK5-ATM信号,可能将受损的谷胱甘肽信令和DDR连接到PHEPGG脑中的神经变性。

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