首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Effects of the Pentapeptide P33 on Memory and Synaptic Plasticity in APP/PS1 Transgenic Mice: A Novel Mechanism Presenting the Protein Fe65 as a Target
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Effects of the Pentapeptide P33 on Memory and Synaptic Plasticity in APP/PS1 Transgenic Mice: A Novel Mechanism Presenting the Protein Fe65 as a Target

机译:五肽P33对APP / PS1转基因小鼠的记忆和突触可塑性的影响:一种新的机制以蛋白质Fe65为目标。

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摘要

Regulated intramembrane proteolysis (RIP) of the amyloid precursor protein (APP) leads to the formation of fragments, among which the intracellular domain of APP (AICD) was also identified to be a causative of early pathological events. AICD-counteracting proteins, such as Fe65, may serve as alternative therapeutic targets of Alzheimer’s disease (AD). The detection of elevated levels of Fe65 in the brains of both human patients and APP transgenic mice may further strengthen the hypothesis that influencing the interaction between Fe65 and APP may have a beneficial effect on the course of AD. Based on a PXP motif, proven to bind to the WW domain of Fe65, a new pentapeptide was designed and tested. The impedimental effect of P33 on the production of beta amyloid (Aβ) (soluble fraction and aggregated plaques) and on the typical features of the AD pathology (decreased dendritic spine density, synaptic markers, elevated inflammatory reactions) was also demonstrated. Significant enhancements of both learning ability and memory function were observed in a Morris water maze paradigm. The results led us to formulate the theory that P33 acts by altering the conformation of Fe65 via binding to its WW domain, consequently hindering any interactions between Fe65 and key members involved in APP processing.
机译:淀粉样前体蛋白(APP)的受调节的膜内蛋白水解(RIP)导致片段的形成,其中APP的胞内结构域(AICD)也被确定是早期病理事件的起因。 AICD抵抗蛋白,例如Fe65,可以作为阿尔茨海默氏病(AD)的替代治疗靶标。在人类患者和APP转基因小鼠的大脑中检测到高水平的Fe65可能会进一步加强这样的假设,即影响Fe65和APP之间的相互作用可能对AD进程具有有益作用。基于已证明可结合Fe65 WW结构域的PXP基序,设计并测试了新的五肽。还证明了P33对β淀粉样蛋白(Aβ)的产生(可溶性部分和聚集的斑块)和AD病理特征(降低的树突棘密度,突触标记,炎性反应增强)的阻碍作用。在莫里斯水迷宫范式中观察到学习能力和记忆功能的显着增强。结果导致我们建立了一个理论,即P33通过结合其WW域改变Fe65的构象来起作用,因此阻碍了Fe65与参与APP处理的关键成员之间的任何相互作用。

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