自噬、衰老和与年龄相关的神经退行性变

IF 14.7 1区 医学 Q1 NEUROSCIENCES
Jennifer E Palmer, Niall Wilson, Sung Min Son, Pawel Obrocki, Lidia Wrobel, Matea Rob, Michael Takla, Viktor I Korolchuk, David C Rubinsztein
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引用次数: 0

摘要

自噬是一种保守的机制,它能降解受损或多余的细胞内容物,并在饥饿条件下实现营养循环。许多神经变性相关蛋白都是自噬底物,在许多神经变性动物模型中,上调自噬可通过增强对有毒蛋白、促炎分子和功能失调细胞器的清除来改善疾病。自噬抑制也会诱导神经元和神经胶质细胞衰老,这种现象会随着年龄的增长而出现在未患病的大脑中,也会对神经变性相关的压力做出反应。然而,衰老和许多与神经变性相关的蛋白质和突变会损害自噬。这就形成了一个潜在的有害反馈回路,即这些疾病相关蛋白的积累会影响自噬清除,从而促进它们的进一步积累和聚集。因此,了解自噬如何在时间、细胞和遗传背景下与衰老、衰老和神经退行性疾病相互作用,对于自噬调节疗法未来在衰老和神经退行性疾病中的临床应用非常重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Autophagy, aging, and age-related neurodegeneration.

Autophagy is a conserved mechanism that degrades damaged or superfluous cellular contents and enables nutrient recycling under starvation conditions. Many neurodegeneration-associated proteins are autophagy substrates, and autophagy upregulation ameliorates disease in many animal models of neurodegeneration by enhancing the clearance of toxic proteins, proinflammatory molecules, and dysfunctional organelles. Autophagy inhibition also induces neuronal and glial senescence, a phenomenon that occurs with increasing age in non-diseased brains as well as in response to neurodegeneration-associated stresses. However, aging and many neurodegeneration-associated proteins and mutations impair autophagy. This creates a potentially detrimental feedback loop whereby the accumulation of these disease-associated proteins impairs their autophagic clearance, facilitating their further accumulation and aggregation. Thus, understanding how autophagy interacts with aging, senescence, and neurodegenerative diseases in a temporal, cellular, and genetic context is important for the future clinical application of autophagy-modulating therapies in aging and neurodegeneration.

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来源期刊
Neuron
Neuron 医学-神经科学
CiteScore
24.50
自引率
3.10%
发文量
382
审稿时长
1 months
期刊介绍: Established as a highly influential journal in neuroscience, Neuron is widely relied upon in the field. The editors adopt interdisciplinary strategies, integrating biophysical, cellular, developmental, and molecular approaches alongside a systems approach to sensory, motor, and higher-order cognitive functions. Serving as a premier intellectual forum, Neuron holds a prominent position in the entire neuroscience community.
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