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WldS Nmnats and axon degeneration-progress in the past two decades

机译:过去二十年来WldSNmnats和轴突变性的进展

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摘要

A chimeric protein called Wallerian degeneration slow (WldS) was first discovered in a spontaneous mutant strain of mice that exhibited delayed Wallerian degeneration. This provides a useful tool in elucidating the mechanisms of axon degeneration. Over-expression of WldS attenuates the axon degeneration that is associated with several neurodegenerative disease models, suggesting a new logic for developing a potential protective strategy. At molecular level, although WldS is a fusion protein, the nicotinamide mononucleotide adenylyl transferase 1 (Nmnat1) is required and sufficient for the protective effects of WldS, indicating a critical role of NAD biosynthesis and perhaps energy metabolism in axon degeneration. These findings challenge the proposed model in which axon degeneration is operated by an active programmed process and thus may have important implication in understanding the mechanisms of neurodegeneration. In this review, we will summarize these recent findings and discuss their relevance to the mechanisms of axon degeneration.
机译:一种嵌合蛋白叫做Wallerian变性慢(Wld S ),是在自发突变的小鼠中发现的,这种小鼠表现出延迟的Wallerian变性。这为阐明轴突变性的机理提供了有用的工具。 Wld S 的过表达减弱了与几种神经退行性疾病模型相关的轴突变性,为开发潜在的保护策略提供了新的逻辑。在分子水平上,尽管Wld S 是一种融合蛋白,但烟酰胺单核苷酸腺苷酸转移酶1(Nmnat1)是必需的,并且对于Wld S 的保护作用是足够的,这表明NAD生物合成和能量代谢在轴突变性中的作用。这些发现对提出的模型提出了挑战,在该模型中,轴突变性是通过主动的程序化过程进行的,因此可能对理解神经变性的机理具有重要意义。在这篇综述中,我们将总结这些最新发现,并讨论它们与轴突变性机制的相关性。

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