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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >p35 and Rac1 underlie the neuroprotection and cognitive improvement induced by CDK5 silencing
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p35 and Rac1 underlie the neuroprotection and cognitive improvement induced by CDK5 silencing

机译:p35和Rac1是CDK5沉默诱导的神经保护和认知改善的基础

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CDK5 plays an important role in neurotransmission and synaptic plasticity in the normal function of the adult brain, and dysregulation can lead to Tau hyperphosphorylation and cognitive impairment. In a previous study, we demonstrated that RNAi knock down of CDK5 reduced the formation of neurofibrillary tangles (NFT) and prevented neuronal loss in triple transgenic Alzheimer's mice. Here, we report that CDK5 RNAi protected against glutamate-mediated excitotoxicity using primary hippocampal neurons transduced with adeno-associated virus 2.5 viral vector eGFP-tagged scrambled or CDK5 shRNA-miR during 12days. Protection was dependent on a concomitant increase in p35 and was reversed using p35 RNAi, which affected the down-stream Rho GTPase activity. Furthermore, p35 over-expression and constitutively active Rac1 mimicked CDK5 silencing-induced neuroprotection. In addition, 3xTg-Alzheimer's disease mice (24months old) were injected in the hippocampus with scrambled or CDK5 shRNA-miR, and spatial learning and memory were performed 3weeks post-injection using Morris' water maze test. Our data showed that CDK5 knock down induced an increase in p35 protein levels and Rac activity in triple transgenic Alzheimer's mice, which correlated with the recovery of cognitive function; these findings confirm that increased p35 and active Rac are involved in neuroprotection. In summary, our data suggest that p35 acts as a mediator of Rho GTPase activity and contributes to the neuroprotection induced by CDK5 RNAi.
机译:CDK5在成人大脑正常功能的神经传递和突触可塑性中起着重要作用,失调可导致Tau过度磷酸化和认知障碍。在先前的研究中,我们证明了RNAi敲除CDK5可减少三重转基因阿尔茨海默氏病小鼠中神经原纤维缠结(NFT)的形成并防止神经元丢失。在这里,我们报道CDK5 RNAi在12天期间使用腺相关病毒2.5病毒载体eGFP标记的扰乱或CDK5 shRNA-miR转导的原代海马神经元来防御谷氨酸介导的兴奋性毒性。保护作用依赖于p35的同时增加,而使用p35 RNAi可逆转保护作用,这会影响下游Rho GTPase的活性。此外,p35过表达和组成性活性Rac1模仿CDK5沉默诱导的神经保护作用。另外,将3只Tg-阿尔茨海默氏病小鼠(24个月大)注射入海马中,加入加扰的或CDK5 shRNA-miR,并在注射后3周使用莫里斯水迷宫测试进行空间学习和记忆。我们的数据显示,敲除CDK5会导致三重转基因阿尔茨海默氏病小鼠的p35蛋白水平和Rac活性增加,这与认知功能的恢复有关。这些发现证实,增加的p35和活性Rac参与神经保护。总之,我们的数据表明p35充当Rho GTPase活性的介质,并有助于CDK5 RNAi诱导的神经保护作用。

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