首页> 美国卫生研究院文献>other >APP Is Cleaved by Bace1 in Pre-Synaptic Vesicles and Establishes a Pre-Synaptic Interactome via Its Intracellular Domain with Molecular Complexes that Regulate Pre-Synaptic Vesicles Functions
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APP Is Cleaved by Bace1 in Pre-Synaptic Vesicles and Establishes a Pre-Synaptic Interactome via Its Intracellular Domain with Molecular Complexes that Regulate Pre-Synaptic Vesicles Functions

机译:APP被Bace1在突触前囊泡中割裂并通过其细胞内结构域与调节突触前囊泡功能的分子复合物建立了突触前相互作用体。

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摘要

Amyloid Precursor Protein (APP) is a type I membrane protein that undergoes extensive processing by secretases, including BACE1. Although mutations in APP and genes that regulate processing of APP, such as PSENs and BRI2/ITM2B, cause dementias, the normal function of APP in synaptic transmission, synaptic plasticity and memory formation is poorly understood. To grasp the biochemical mechanisms underlying the function of APP in the central nervous system, it is important to first define the sub-cellular localization of APP in synapses and the synaptic interactome of APP. Using biochemical and electron microscopy approaches, we have found that APP is localized in pre-synaptic vesicles, where it is processed by Bace1. By means of a proteomic approach, we have characterized the synaptic interactome of the APP intracellular domain. We focused on this region of APP because in vivo data underline the central funtional and pathological role of the intracellular domain of APP. Consistent with the expression of APP in pre-synaptic vesicles, the synaptic APP intracellular domain interactome is predominantly constituted by pre-synaptic, rather than post-synaptic, proteins. This pre-synaptic interactome of the APP intracellular domain includes proteins expressed on pre-synaptic vesicles such as the vesicular SNARE Vamp2/Vamp1 and the Ca2+ sensors Synaptotagmin-1/Synaptotagmin-2, and non-vesicular pre-synaptic proteins that regulate exocytosis, endocytosis and recycling of pre-synaptic vesicles, such as target-membrane-SNAREs (Syntaxin-1b, Syntaxin-1a, Snap25 and Snap47), Munc-18, Nsf, α/β/γ-Snaps and complexin. These data are consistent with a functional role for APP, via its carboxyl-terminal domain, in exocytosis, endocytosis and/or recycling of pre-synaptic vesicles.
机译:淀粉样前体蛋白(APP)是一种I型膜蛋白,会受到包括BACE1在内的分泌酶的广泛加工。尽管APP中的突变和调节APP加工的基因(例如PSEN和BRI2 / ITM2B)会导致痴呆,但人们对APP在突触传递,突触可塑性和记忆形成中的正常功能了解甚少。为了掌握APP在中枢神经系统中功能的生化机制,重要的是首先定义APP在突触中的亚细胞定位以及APP的突触相互作用组。使用生化和电子显微镜方法,我们发现APP定位在突触前囊泡中,由Bace1处理。通过蛋白质组学的方法,我们已经表征了APP细胞内域的突触相互作用组。我们专注于APP的这一区域,因为体内数据强调了APP细胞内结构域的核心功能和病理作用。与APP在突触前囊泡中的表达一致,突触APP细胞内域相互作用组主要由突触前而不是突触后蛋白组成。 APP胞内域的突触前相互作用组包括在突触前囊泡上表达的蛋白,例如囊泡SNARE Vamp2 / Vamp1和Ca 2 + 传感器Synaptotagmin-1 / Synaptotagmin-2,以及非调节突触前囊泡的胞吐,内吞作用和再循环的水泡突触前蛋白,例如靶膜-SNARE(Syntaxin-1b,Syntaxin-1a,Snap25和Snap47),Munc-18,Nsf,α/β/γ -快照和复杂。这些数据与APP通过其羧基末端结构域在突触前囊泡的胞吐,内吞和/或再循环中的功能作用一致。

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