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The Upside of APP at Synapses

机译:突触对APP的好处

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SUMMARY The memory dysfunctions that characterize Alzheimer's disease (AD) are strongly correlated with synapse loss. The amyloid precursor protein (APP) and its cleavage product Aβ play central roles in synapse and memory loss, and thus are strongly implicated in the pathogenesis of AD. Numerous in vitro and transgenic AD mouse model studies have shown that overexpression of APP leads to Aβ accumulation, which causes decreased synaptic activity and dendritic spine density. However, the normal synaptic function of APP itself is not fully understood. Several recent studies have found that full‐length APP promotes synaptic activity, synapse formation, and dendritic spine formation. These findings cast APP as a potential key player in learning and memory. It is of interest that the synaptic functions of full‐length APP are opposite to the effects associated with pathological Aβ accumulation. In this review, we will summarize the normal functions of APP at synapses and spines along with other known functions of APP, including its role in cell motility, neuronal migration, and neurite outgrowth. These studies shed light on the physiological actions of APP, independent of Aβ effects, and thus lead to a better understanding of the synaptic dysfunctions associated with AD.
机译:发明内容表征阿尔茨海默氏病(AD)的记忆功能障碍与突触丧失密切相关。淀粉样蛋白前体蛋白(APP)及其裂解产物Aβ在突触和记忆丧失中起着核心作用,因此与AD的发病机制密切相关。大量体外和转基因AD小鼠模型研究表明,APP的过度表达会导致Aβ积累,从而导致突触活性和树突棘密度降低。但是,APP本身的正常突触功能尚未完全了解。最近的一些研究发现,全长APP可以促进突触活性,突触形成和树突棘形成。这些发现使APP成为学习和记忆的潜在关键参与者。有趣的是,全长APP的突触功能与病理Aβ积累相关的作用相反。在这篇综述中,我们将总结APP在突触和棘突的正常功能以及APP的其他已知功能,包括其在细胞运动,神经元迁移和神经突生长中的作用。这些研究揭示了APP的生理作用,而与Aβ效应无关,因此可以更好地理解与AD相关的突触功能障碍。

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