Neurodegeneration and axonal mRNA transportation.

American journal of neurodegenerative disease Pub Date : 2021-02-15 eCollection Date: 2021-01-01
Mohammad Mofatteh
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Abstract

The prevalence of neurodegenerative diseases is accelerating in rapidly aging global population. Novel and effective diagnostic and therapeutic methods are required to tackle the global issue of neurodegeneration in the future. A better understanding of the potential molecular mechanism causing neurodegeneration can shed light on dysfunctional processes in diseased neurons, which can pave the way to design and synthesize novel targets for early diagnosis during the asymptomatic phase of the disease. Abnormal protein aggregation is a hallmark of neurodegenerative diseases which can hamper transportation of cargoes into axons. Recent evidence suggests that disruption of local protein synthesis has been observed in neurodegenerative diseases. Because of their highly asymmetric structure, highly polarized neurons require trafficking of cargoes from the cell body to different subcellular regions to meet the extensive demands of cellular physiology. Localization of mRNAs and subsequent local translation to corresponding proteins in axons is a mechanism which allows neurons to rapidly respond to external stimuli as well as establishing neuronal networks by synthesizing proteins on demand. Axonal protein synthesis is required for axon guidance, synapse formation and plasticity, axon maintenance and regeneration in response to injury. Different types of excitatory and inhibitory neurons in the central and peripheral nervous systems have been shown to localize mRNA. Rising evidence suggests that the repertoire of localizing mRNA in axons can change during aging, indicating a connection between axonal mRNA trafficking and aging diseases such as neurodegeneration. Here, I briefly review the latest findings on the importance of mRNA localization and local translation in neurons and the consequences of their disruption in neurodegenerative diseases. In addition, I discuss recent evidence that dysregulation of mRNA localization and local protein translation can contribute to the formation of neurodegenerative diseases such as Alzheimer's disease, Amyotrophic Lateral Sclerosis, and Spinal Muscular Atrophy. In addition, I discuss recent findings on mRNAs localizing to mitochondria in neurodegeneration.

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神经变性和轴突mRNA转运。
在全球迅速老龄化的人口中,神经退行性疾病的患病率正在加速上升。在未来,需要新颖有效的诊断和治疗方法来解决神经变性的全球性问题。更好地了解导致神经退行性变的潜在分子机制可以揭示病变神经元的功能障碍过程,这可以为设计和合成新的靶点铺平道路,以便在疾病的无症状阶段进行早期诊断。异常蛋白质聚集是神经退行性疾病的一个标志,它可以阻碍货物进入轴突的运输。最近的证据表明,局部蛋白质合成的破坏已在神经退行性疾病中观察到。由于其高度不对称的结构,高极化神经元需要将货物从细胞体运输到不同的亚细胞区域,以满足细胞生理学的广泛需求。mrna在轴突中定位并翻译为相应的蛋白质是神经元快速响应外界刺激,并通过按需合成蛋白质建立神经元网络的机制。轴突蛋白的合成对轴突的引导、突触的形成和可塑性、轴突的维持和损伤后的再生都是必需的。中枢和外周神经系统中不同类型的兴奋性和抑制性神经元已被证明定位mRNA。越来越多的证据表明,在衰老过程中,轴突mRNA的定位库会发生变化,这表明轴突mRNA的转运与神经退行性等衰老疾病之间存在联系。在这里,我简要回顾了关于神经元中mRNA定位和局部翻译的重要性以及它们在神经退行性疾病中破坏的后果的最新发现。此外,我还讨论了最近的证据表明mRNA定位和局部蛋白翻译的失调可能导致神经退行性疾病的形成,如阿尔茨海默病、肌萎缩侧索硬化症和脊髓性肌萎缩症。此外,我还讨论了神经退行性疾病中mrna定位于线粒体的最新发现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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