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The intersection of amyloid beta and tau in glutamatergic synaptic dysfunction and collapse in Alzheimer’s disease

机译:淀粉样蛋白β和tau在谷氨酸能突触功能障碍和阿尔茨海默氏病崩溃中的交集

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摘要

The synaptic connections that form between neurons during development remain plastic and able to adapt throughout the lifespan, enabling learning and memory. However, during aging and in particular in neurodegenerative diseases, synapses become dysfunctional and degenerate, contributing to dementia. In the case of Alzheimer’s disease (AD), synapse loss is the strongest pathological correlate of cognitive decline, indicating that synaptic degeneration plays a central role in dementia. Over the past decade, strong evidence has emerged that oligomeric forms of amyloid beta, the protein that accumulates in senile plaques in the AD brain, contribute to degeneration of synaptic structure and function. More recent data indicate that pathological forms of tau protein, which accumulate in neurofibrillary tangles in the AD brain, also cause synaptic dysfunction and loss. In this review, we will present the case that soluble forms of both amyloid beta and tau protein act at the synapse to cause neural network dysfunction, and further that these two pathological proteins may act in concert to cause synaptic pathology. These data may have wide-ranging implications for the targeting of soluble pathological proteins in neurodegenerative diseases to prevent or reverse cognitive decline.
机译:在发育过程中神经元之间形成的突触连接保持可塑性,并能够在整个生命周期中适应,从而实现学习和记忆。然而,在衰老期间,特别是在神经退行性疾病中,突触变得功能失调并退化,从而导致痴呆。就阿尔茨海默氏病(AD)而言,突触丧失是认知能力下降的最强病理相关因素,这表明突触变性在痴呆症中起着核心作用。在过去的十年中,强有力的证据表明,淀粉样蛋白β的低聚形式(一种聚集在AD脑中老年斑中的蛋白质)有助于突触结构和功能的退化。最近的数据表明,tau蛋白的病理形式在AD脑的神经原纤维缠结中积累,也引起突触功能障碍和丧失。在这篇综述中,我们将介绍淀粉样蛋白β和tau蛋白的可溶形式在突触中起作用以引起神经网络功能障碍的情况,此外,这两种病理蛋白可能协同作用以引起突触病理。这些数据可能对神经退行性疾病中的可溶性病理蛋白的靶向具有广泛的意义,以预防或逆转认知能力下降。

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