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Pathomechanisms of TDP‐43 in neurodegeneration

机译:TDP-43在神经变性中的病理机制

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摘要

Abstract Neurodegeneration, a term that refers to the progressive loss of structure and function of neurons, is a feature of many neurodegenerative diseases such as amyotrophic lateral sclerosis (ALS), frontotemporal lobar degeneration (FTLD), Alzheimer's disease (AD), Parkinson's disease (PD), and Huntington's disease (HD). There is no cure or treatment available that can prevent or reverse neurodegenerative conditions. The causes of neurodegeneration in these diseases remain largely unknown; yet, an extremely small proportion of these devastating diseases are associated with genetic mutations in proteins involved in a wide range of cellular pathways and processes. Over the past decade, it has become increasingly clear that the most notable neurodegenerative diseases, such as ALS, FTLD, and AD, share a common prominent pathological feature known as TAR DNA‐binding protein 43 (TDP‐43) proteinopathy, which is usually characterized by the presence of aberrant phosphorylation, ubiquitination, cleavage and/or nuclear depletion of TDP‐43 in neurons and glial cells. The role of TDP‐43 as a neurotoxicity trigger has been well documented in different in?vitro and in?vivo experimental models. As such, the investigation of TDP‐43 pathomechanisms in various major neurodegenerative diseases is on the rise. Here, after a discussion of stages of TDP‐43 proteinopathy during disease progression in various major neurodegenerative diseases, we review previous and most recent studies about the potential pathomechanisms with a particular emphasis on ALS, FTLD, and AD, and discuss the possibility of targeting TDP‐43 as a common therapeutic approach to treat neurodegenerative diseases.
机译:摘要神经变性,是指神经元结构和功能逐步丧失的术语,是许多神经变性疾病的特征,如肌营养的外侧硬化症(ALS),终颞叶片变性(FTLD),阿尔茨海默病(AD),帕金森病( PD)和亨廷顿的疾病(HD)。没有可用于预防或逆转神经变性条件的固化或治疗。这些疾病中神经变性的原因仍然很大程度上是未知的;然而,这些破坏性疾病的极小比例与参与各种细胞途径和方法的蛋白质中的遗传突变有关。在过去的十年中,越来越明显,最值得注意的是ALS,FTLD和AD,如ALS,FTLD和AD,共享称为焦油DNA结合蛋白43(TDP-43)蛋白质病的常见突出病理特征,通常是特征在于神经元和神经胶质细胞中的异常磷酸化,泛素化,切割和/或核耗尽。 TDP-43作为神经毒性触发的作用已在不同的情况下在ΔVivo实验模型中有很好的记录。因此,对各种主要神经变性疾病的TDP-43土地机制的调查正在上升。在这里,在各种主要神经退行性疾病的疾病进展期间讨论TDP-43蛋白质病的阶段后,我们审查了关于潜在的土地机制的先前和最近的研究,特别强调ALS,FTLD和广告,并讨论了目标的可能性TDP-43作为治疗神经变性疾病的常见治疗方法。

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