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Tangles Toxicity and Tau Secretion in AD – New Approaches to a Vexing Problem

机译:缠结毒性和牛磺酸的分泌-解决令人困扰的问题的新方法

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摘要

When the microtubule (MT)-associated protein tau is not bound to axonal MTs, it becomes hyperphosphorylated and vulnerable to proteolytic cleavage and other changes typically seen in the hallmark tau deposits (neurofibrillary tangles) of tau-associated neurodegenerative diseases (tauopathies). Neurofibrillary tangle formation is preceded by tau oligomerization and accompanied by covalent crosslinking and cytotoxicity, making tangle cytopathogenesis a natural central focus of studies directed at understanding the role of tau in neurodegenerative disease. Recent studies suggest that the formation of tau oligomers may be more closely related to tau neurotoxicity than the presence of the tangles themselves. It has also become increasingly clear that tau pathobiology involves a wide variety of other cellular abnormalities including a disruption of autophagy, vesicle trafficking mechanisms, axoplasmic transport, neuronal polarity, and even the secretion of tau, which is normally a cytosolic protein, to the extracellular space. In this review, we discuss tau misprocessing, toxicity and secretion in the context of normal tau functions in developing and mature neurons. We also compare tau cytopathology to that of other aggregation-prone proteins involved in neurodegeneration (alpha synuclein, prion protein, and APP). Finally, we consider potential mechanisms of intra- and interneuronal tau lesion spreading, an area of particular recent interest.
机译:当与微管(MT)相关的蛋白tau未与轴突MT结合时,它会被过度磷酸化并易受蛋白水解性裂解和其他在tau相关神经退行性疾病(tauopathies)的标志性tau沉积物(神经原纤维缠结)中常见的变化的影响。神经原纤维缠结的形成先于tau寡聚化并伴有共价交联和细胞毒性,使得缠结细胞致病性成为旨在了解tau在神经退行性疾病中作用的自然研究重点。最近的研究表明,tau低聚物的形成与tau神经毒性的关系可能比缠结本身的存在更为紧密。还越来越清楚的是,tau病理生物学涉及多种其他细胞异常,包括自噬破坏,囊泡运输机制,轴质运输,神经元极性,甚至是通常为胞质蛋白的tau分泌到细胞外。空间。在这篇综述中,我们讨论了在发育中的和成熟的神经元中正常tau功能的背景下tau的误加工,毒性和分泌。我们还将tau细胞病理学与其他参与神经变性的易于聚集的蛋白质(α突触核蛋白,病毒蛋白和APP)进行比较。最后,我们考虑了神经内和神经内tau病变扩散的潜在机制,这是近期特别关注的领域。

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