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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >p120-catenin is necessary for neuroprotection induced by CDK5 silencing in models of Alzheimer's disease
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p120-catenin is necessary for neuroprotection induced by CDK5 silencing in models of Alzheimer's disease

机译:CDK5沉默在阿尔茨海默病的模型中所诱导的神经保护剂是必要的

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Cyclin-dependent kinase 5 (CDK5) plays important roles in synaptic function. Its unregulated over-activation has been, however, associated with neurodegeneration in Alzheimer's disease. Our previous studies revealed that CDK5 silencing ameliorates tauopathy and spatial memory impairment in the 3xTgAD mouse model. However, how CDK5 targeting affects synaptic adhesion proteins, such as those involved in the cadherin/catenin system, during learning and memory processes is not completely understood. In this study, we detected reduced expression of p120 catenin (p120 ctn), N-cadherin, and -catenin in the brain of human Alzheimer's disease patients, in addition to a reduced PSD95 and GluN2B protein levels in a 3xTgAD mouse model. Such decrease in synaptic proteins was recovered by CDK5 silencing in mice leading to a better learning and memory performance. Additionally, CDK5 inhibition or knockout increased p120 ctn levels. Moreover, in a glutamate-induced excitotoxicity model, CDK5 silencing-induced neuroprotection depended on p120 ctn. Together, those findings suggest that p120 ctn plays an important role in the neuronal dysfunction of Alzheimer's disease models and contributes to CDK5 silencing-induced neuroprotection and improvement of memory function.
机译:Cyclin依赖性激酶5(CDK5)在突触函数中起重要作用。然而,其未调节的过度激活已经与阿尔茨海默病患者的神经变性相关。我们以前的研究表明,CDK5沉默地改善了3XTGAD鼠标模型中的跨部门病变和空间内存损伤。然而,CDK5靶向如何影响突触粘附蛋白,例如参与Cadherin / Catenin系统的那些,在学习期间,并不完全理解。在这项研究中,除了在3XTGAD小鼠模型中的PSD95和GLUN2B蛋白水平降低,还检测了P120 Catenin(P120CTN),N-CDADHERIN和-CATENIN的表达减少了P120 catenin(p120ctn),n-cadherin和-catenin。通过小鼠的CDK5沉默回收突触蛋白的这种降低,导致更好的学习和记忆性能。另外,CDK5抑制或敲除增加了P120 CTN水平。此外,在谷氨酸诱导的兴奋毒性模型中,CDK5沉默诱导的神经保护件依赖于P120 CTN。这些研究结果表明,P120 CTN在阿尔茨海默病模型的神经元功能障碍中起重要作用,有助于CDK5沉默诱导的神经保护和内存功能的改善。

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