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Modified cell cycle status in a mouse model of altered neuronal vulnerability (slow Wallerian degeneration; Wlds)

机译:神经元脆弱性改变的小鼠模型中的细胞周期状态发生改变(慢Wallerian变性; Wlds)

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摘要

BackgroundAltered neuronal vulnerability underlies many diseases of the human nervous system, resulting in degeneration and loss of neurons. The neuroprotective slow Wallerian degeneration (Wlds) mutation delays degeneration in axonal and synaptic compartments of neurons following a wide range of traumatic and disease-inducing stimuli, providing a powerful experimental tool with which to investigate modulation of neuronal vulnerability. Although the mechanisms through which Wlds confers neuroprotection remain unclear, a diverse range of downstream modifications, incorporating several genes/pathways, have been implicated. These include the following: elevated nicotinamide adenine dinucleotide (NAD) levels associated with nicotinamide mononucleotide adenylyltransferase 1 (Nmnat1; a part of the chimeric Wlds gene); altered mRNA expression levels of genes such as pituitary tumor transforming gene 1 (Pttg1); changes in the location/activity of the ubiquitin-proteasome machinery via binding to valosin-containing protein (VCP/p97); and modified synaptic expression of proteins such as ubiquitin-activating enzyme E1 (Ube1).
机译:背景变化的神经元脆弱性是人类神经系统许多疾病的基础,导致神经元变性和丧失。神经保护性慢Wallerian变性(Wld s )突变在一系列创伤和疾病诱导刺激后延迟了神经元轴突和突触区室的变性,为研究神经元的调节提供了强大的实验工具脆弱性。尽管Wlds赋予神经保护的机制尚不清楚,但涉及多种基因/途径的下游修饰的范围很广。其中包括:与烟酰胺单核苷酸腺苷酸转移酶1(Nmnat1;嵌合的Wld s 基因的一部分)相关的烟酰胺腺嘌呤二核苷酸(NAD)水平升高;垂体肿瘤转化基因1(Pttg1)等基因的mRNA表达水平改变;通过结合含缬氨酸的蛋白(VCP / p97)改变泛素-蛋白酶体机制的位置/活性;和修饰的蛋白(例如泛素激活酶E1(Ube1))的突触表达。

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