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Differential Regulation of Amyloid Precursor Protein/Presenilin 1 Interaction during Ab40/42 Production Detected Using Fusion Constructs

机译:aB40 / 42生产过程中淀粉样前体蛋白的差异调节/早老1相互作用检测到使用融合构建体

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摘要

Beta amyloid peptides (Aβ) play a key role in the pathogenesis of Alzheimer disease (AD). Presenilins (PS) function as the catalytic subunits of γ-secretase, the enzyme that releases Aβ from ectodomain cleaved amyloid precursor protein (APP) by intramembrane proteolysis. Familial Alzheimer disease (FAD)-linked PSEN mutations alter APP processing in a manner that increases the relative abundance of longer Aβ42 peptides to that of Aβ40 peptides. The mechanisms by which Aβ40 and Aβ42 peptides are produced in a ratio of ten to one by wild type presenilin (PS) and by which Aβ42 is overproduced by FAD-linked PS variants are not completely understood. We generated chimeras of the amyloid precursor protein C-terminal fragment (C99) and PS to address this issue. We found a chimeric protein where C99 is fused to the PS1 N-terminus undergoes in cis processing to produce Aβ and that a fusion protein harboring FAD-linked PS1 mutations overproduced Aβ42. To change the molecular interactions within the C99-PS1 fusion protein, we made sequential deletions of the junction between C99 and PS1. We found differential effects of deletion in C99-PS1 on Aβ40 and 42 production. Deletion of the junction between APP CTF and PS1 in the fusion protein decreased Aβ40, while it did not decrease Aβ42 production in the presence or absence of FAD-linked PS1 mutation. These results are consistent with the idea that the APP/PS interaction is differentially regulated during Aβ40 and 42 production.
机译:β淀粉样肽(Aβ)在阿尔茨海默病(AD)的发病机理中起着关键作用。早老蛋白(PS)充当γ-分泌酶的催化亚基,该酶通过膜内蛋白水解作用从胞外域裂解的淀粉样前体蛋白(APP)中释放Aβ。家族性阿尔茨海默病(FAD)相关的PSEN突变以增加较长Aβ42肽相对于Aβ40肽的相对丰度的方式改变APP的加工过程。通过野生型早老素(PS)以十比一的比例产生Aβ40和Aβ42肽以及通过FAD连接的PS变体过量产生Aβ42的机制尚不完全清楚。我们生成了淀粉样蛋白前体蛋白C末端片段(C99)和PS的嵌合体,以解决此问题。我们发现了一种嵌合蛋白,其中C99与PS1 N末端融合,在顺式加工中产生Aβ,而带有FAD连锁PS1突变的融合蛋白则过量产生Aβ42。为了改变C99-PS1融合蛋白内的分子相互作用,我们对C99和PS1之间的连接进行了顺序删除。我们发现C99-PS1缺失对Aβ40和42产生的不同影响。融合蛋白中APP CTF和PS1之间连接的缺失会降低Aβ40,而在存在或不存在FAD连锁的PS1突变的情况下,它不会降低Aβ42的产生。这些结果与在Aβ40和42产生期间APP / PS相互作用被差异调节的想法一致。

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