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Homodimerization as a molecular switch between low and high efficiency PrPsupC/sup cell surface delivery and neuroprotective activity

机译:均质化作为低效率和高效PrP C 细胞表面传递与神经保护活性之间的分子转换

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PrPC is associated with a variety of functions, and its ability to interact with a multitude of partners, including itself, may largely explain PrP multifunctionality and the lack of consensus on the genuine physiological function of the protein in vivo. In contrast, there is a consensus in the literature that alterations in PrPC trafficking and intracellular retention result in neuronal degeneration. In addition, a proteolytic modification in the late secretory pathway termed the α-cleavage induces the secretion of PrPN1, a PrPC-derived metabolite with fascinating neuroprotective activity against toxic oligomeric Aβ molecules implicated in Alzheimer disease. Thus, studies focusing on understanding the regulation of PrPC trafficking to the cell surface and the modulation of α-cleavage are essential. The objective of this commentary is to highlight recent evidences that PrPC homodimerization stimulates trafficking of the protein to the cell surface and results in high levels of PrPN1 secretion. We also discuss a hypothetical model for these results and comment on future challenges and opportunities.
机译:PrPC与多种功能有关,它与多种配偶体(包括其自身)相互作用的能力可能在很大程度上解释了PrP的多功能性以及对该蛋白在体内真正的生理功能缺乏共识。相反,在文献中有一个共识,即PrPC转运和细胞内滞留的改变导致神经元变性。此外,在晚期分泌途径中的蛋白水解修饰称为α切割,可诱导PrPN1的分泌,PrPN1是PrPC衍生的代谢产物,对涉及阿尔茨海默病的毒性寡聚Aβ分子具有令人着迷的神经保护活性。因此,专注于理解PrPC向细胞表面运输的调控和α-切割调控的研究是必不可少的。该评论的目的是强调最近的证据,即PrPC同源二聚化可刺激蛋白质向细胞表面的运输,并导致高水平的PrPN1分泌。我们还将讨论这些结果的假设模型,并对未来的挑战和机遇发表评论。

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