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Unraveling the neuroprotective mechanisms of PrPC in excitotoxicity

机译:揭示PrPC在兴奋性毒性中的神经保护机制

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摘要

Knowledge of the natural roles of cellular prion protein (PrPC) is essential to an understanding of the molecular basis of prion pathologies. This GPI-anchored protein has been described in synaptic contacts, and loss of its synaptic function in complex systems may contribute to the synaptic loss and neuronal degeneration observed in prionopathy. In addition, Prnp knockout mice show enhanced susceptibility to several excitotoxic insults, GABAA receptor-mediated fast inhibition was weakened, LTP was modified and cellular stress increased. Although little is known about how PrPCexerts its function at the synapse or the downstream events leading to PrP C-mediated neuroprotection against excitotoxic insults, PrP C has recently been reported to interact with two glutamate receptor subunits (NR2D and GluR6/7). In both cases the presence of PrPC blocks the neurotoxicity induced by NMDA and Kainate respectively. Furthermore, signals for seizure and neuronal cell death in response to Kainate in Prnp knockout mouse are associated with JNK3 activity, through enhancing the interaction of GluR6 with PSD-95. In combination with previous data, these results shed light on the molecular mechanisms behind the role of PrPC in excitotoxicity. Future experimental approaches are suggested and discussed.
机译:了解细胞病毒蛋白(PrPC)的天然作用对于理解病毒病理学的分子基础至关重要。已经在突触接触中描述了这种GPI锚定蛋白,其在复杂系统中突触功能的丧失可能导致在虫病中观察到的突触丧失和神经元变性。此外,Prnp基因敲除小鼠对几种兴奋性毒性损伤的敏感性增强,GABAA受体介导的快速抑制作用减弱,LTP修饰且细胞应激增加。尽管对PrPC如何在突触或下游事件导致PrP C介导的神经保护以抵抗兴奋性毒性损伤方面了解其功能的了解很少,但最近已报道PrPC与两个谷氨酸受体亚基(NR2D和GluR6 / 7)相互作用。在这两种情况下,PrPC的存在分别阻断了NMDA和Kainate诱导的神经毒性。此外,通过增强GluR6与PSD-95的相互作用,Prnp基因敲除小鼠的响应于海因酸盐的癫痫发作和神经元细胞死亡的信号与JNK3活性相关。结合先前的数据,这些结果阐明了PrPC在兴奋性毒性中作用背后的分子机制。建议并讨论了未来的实验方法。

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