首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Interactome Analyses of Mature γ-Secretase Complexes Reveal Distinct Molecular Environments of Presenilin (PS) Paralogs and Preferential Binding of Signal Peptide Peptidase to PS2
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Interactome Analyses of Mature γ-Secretase Complexes Reveal Distinct Molecular Environments of Presenilin (PS) Paralogs and Preferential Binding of Signal Peptide Peptidase to PS2

机译:成熟的γ-分泌酶复合物的交互作用分析揭示了早老素(PS)旁系同源物的独特分子环境和信号肽肽酶与PS2的优先结合。

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摘要

γ-Secretase plays a pivotal role in the production of neurotoxic amyloid β-peptides (Aβ) in Alzheimer disease (AD) and consists of a heterotetrameric core complex that includes the aspartyl intramembrane protease presenilin (PS). The human genome codes for two presenilin paralogs. To understand the causes for distinct phenotypes of PS paralog-deficient mice and elucidate whether PS mutations associated with early-onset AD affect the molecular environment of mature γ-secretase complexes, quantitative interactome comparisons were undertaken. Brains of mice engineered to express wild-type or mutant PS1, or HEK293 cells stably expressing PS paralogs with N-terminal tandem-affinity purification tags served as biological source materials. The analyses revealed novel interactions of the γ-secretase core complex with a molecular machinery that targets and fuses synaptic vesicles to cellular membranes and with the H+-transporting lysosomal ATPase macrocomplex but uncovered no differences in the interactomes of wild-type and mutant PS1. The catenin/cadherin network was almost exclusively found associated with PS1. Another intramembrane protease, signal peptide peptidase, predominantly co-purified with PS2-containing γ-secretase complexes and was observed to influence Aβ production.
机译:γ-分泌酶在阿尔茨海默病(AD)中神经毒性淀粉样β肽(Aβ)的产生中起关键作用,并且由异四聚体核心复合物组成,该复合物包括天冬氨酰膜内蛋白酶早老素(PS)。人类基因组编码两个早老素旁系同源物。为了解PS旁系同源缺陷小鼠不同表型的原因,并阐明与早发性AD相关的PS突变是否影响成熟的γ-分泌酶复合物的分子环境,进行了定量相互作用组比较。经过工程改造以表达野生型或突变型PS1或稳定表达具有N端串联亲和纯化标签的PS旁系同源物的HEK293细胞的小鼠大脑,被用作生物来源材料。分析揭示了γ-分泌酶核心复合物与靶向和融合突触小泡至细胞膜的分子机制以及H + -转运溶酶体ATPase宏复合物的新型相互作用,但未发现γ-分泌酶核心复合物的相互作用野生型和突变PS1。连环蛋白/钙粘蛋白网络几乎只与PS1相关。另一个膜内蛋白酶,信号肽肽酶,主要与含PS2的γ-分泌酶复合物共纯化,并观察到会影响Aβ的产生。

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