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果蝇全长淀粉样前体蛋白参与记忆形成。

The full-length form of the Drosophila amyloid precursor protein is involved in memory formation.

机构信息

Genes and Dynamics of Memory Systems, Brain Plasticity Unit, CNRS, ESPCI-ParisTech, PSL Research University, 75005 Paris, France.

Genes and Dynamics of Memory Systems, Brain Plasticity Unit, CNRS, ESPCI-ParisTech, PSL Research University, 75005 Paris, France

出版信息

J Neurosci. 2015 Jan 21;35(3):1043-51. doi: 10.1523/JNEUROSCI.2093-14.2015.

Abstract

The APP plays a central role in AD, a pathology that first manifests as a memory decline. Understanding the role of APP in normal cognition is fundamental in understanding the progression of AD, and mammalian studies have pointed to a role of secreted APPα in memory. In Drosophila, we recently showed that APPL, the fly APP ortholog, is required for associative memory. In the present study, we aimed to characterize which form of APPL is involved in this process. We show that expression of a secreted-APPL form in the mushroom bodies, the center for olfactory memory, is able to rescue the memory deficit caused by APPL partial loss of function. We next assessed the impact on memory of the Drosophila α-secretase kuzbanian (KUZ), the enzyme initiating the nonamyloidogenic pathway that produces secreted APPLα. Strikingly, KUZ overexpression not only failed to rescue the memory deficit caused by APPL loss of function, it exacerbated this deficit. We further show that in addition to an increase in secreted-APPL forms, KUZ overexpression caused a decrease of membrane-bound full-length species that could explain the memory deficit. Indeed, we observed that transient expression of a constitutive membrane-bound mutant APPL form is sufficient to rescue the memory deficit caused by APPL reduction, revealing for the first time a role of full-length APPL in memory formation. Our data demonstrate that, in addition to secreted APPL, the noncleaved form is involved in memory, raising the possibility that secreted and full-length APPL act together in memory processes.

摘要

APP 在 AD 中起着核心作用,AD 是一种首先表现为记忆下降的病理。了解 APP 在正常认知中的作用对于理解 AD 的进展至关重要,哺乳动物研究表明分泌型 APPα 在记忆中起作用。在果蝇中,我们最近表明,APP 的果蝇同源物 APPL 参与了联想记忆。在本研究中,我们旨在表征参与该过程的 APPL 形式。我们表明,在蘑菇体(嗅觉记忆的中心)中表达分泌型 APPL 形式能够挽救 APPL 部分功能丧失引起的记忆缺陷。接下来,我们评估了果蝇 α-分泌酶 kuzbanian(KUZ)对记忆的影响,KUZ 是启动产生分泌型 APPLα 的非淀粉样蛋白形成途径的酶。令人惊讶的是,KUZ 过表达不仅未能挽救 APPL 功能丧失引起的记忆缺陷,反而加剧了这种缺陷。我们进一步表明,除了分泌型 APPL 形式增加外,KUZ 过表达还导致膜结合全长物种减少,这可以解释记忆缺陷。事实上,我们观察到瞬时表达组成型膜结合突变型 APPL 形式足以挽救 APPL 减少引起的记忆缺陷,首次揭示了全长 APPL 在记忆形成中的作用。我们的数据表明,除了分泌型 APPL 外,未切割的形式也参与了记忆,这增加了分泌型和全长 APPL 一起参与记忆过程的可能性。

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