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Palmitoylated APP Forms Dimers Cleaved by BACE1

机译:棕榈酰化的APP形式二聚体由BACE1拆分

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摘要

A major rate-limiting step for Aβ generation and deposition in Alzheimer’s disease brains is BACE1-mediated cleavage (β-cleavage) of the amyloid precursor protein (APP). We previously reported that APP undergoes palmitoylation at two cysteine residues (Cys186 and Cys187) in the E1-ectodomain. 8–10% of total APP is palmitoylated in vitro and in vivo. Palmitoylated APP (palAPP) shows greater preference for β-cleavage than total APP in detergent resistant lipid rafts. Protein palmitoylation is known to promote protein dimerization. Since dimerization of APP at its E1-ectodomain results in elevated BACE1-mediated cleavage of APP, we have now investigated whether palmitoylation of APP affects its dimerization and whether this leads to elevated β-cleavage of the protein. Here we report that over 90% of palAPP is dimerized while only ~20% of total APP forms dimers. PalAPP-dimers are predominantly cis-oriented while total APP dimerizes in both cis- and trans-orientation. PalAPP forms dimers 4.5-times more efficiently than total APP. Overexpression of the palmitoylating enzymes DHHC7 and DHHC21 that increase palAPP levels and Aβ release, also increased APP dimerization in cells. Conversely, inhibition of APP palmitoylation by pharmacological inhibitors reduced APP-dimerization in coimmunoprecipitation and FLIM/FRET assays. Finally, in vitro BACE1-activity assays demonstrate that palmitoylation-dependent dimerization of APP promotes β-cleavage of APP in lipid-rich detergent resistant cell membranes (DRMs), when compared to total APP. Most importantly, generation of sAPPβ-sAPPβ dimers is dependent on APP-palmitoylation while total sAPPβ generation is not. Since BACE1 shows preference for palAPP dimers over total APP, palAPP dimers may serve as novel targets for effective β-cleavage inhibitors of APP as opposed to BACE1 inhibitors.
机译:阿尔茨海默氏病大脑中Aβ生成和沉积的主要限速步骤是淀粉样前体蛋白(APP)的BACE1介导的裂解(β裂解)。我们之前曾报道过,APP在E1-胞外域的两个半胱氨酸残基(Cys 186 和Cys 187 )上发生棕榈酰化。在体外和体内,总APP的8-10%被棕榈酰化。棕榈酰化的APP(palAPP)在耐洗涤剂的脂筏中比总APP表现出更高的β裂解偏好。已知蛋白质棕榈酰化可促进蛋白质二聚化。由于APP在其E1胞外域的二聚化导致BACE1介导的APP裂解增加,因此我们现在研究了APP的棕榈酰化是否影响其二聚化,以及这是否导致蛋白质的β裂解升高。在这里,我们报告说palAPP中有90%以上是二聚体,而APP总数中只有约20%是二聚体。 PalAPP-二聚体主要为顺式,而总的APP在顺-和反-方向上都二聚。 PalAPP形成二聚体的效率是总APP的4.5倍。棕榈酰化酶DHHC7和DHHC21的过表达增加了palAPP水平和Aβ的释放,也增加了APP在细胞中的二聚作用。相反,在共免疫沉淀和FLIM / FRET分析中,药理学抑制剂对APP棕榈酰化的抑制作用会降低APP二聚化。最后,体外BACE1-活性测定表明,与总APP相比,APP的棕榈酰化依赖性二聚化可促进富含脂质的去污剂抗性细胞膜(DRM)中APP的β裂解。最重要的是,sAPPβ-sAPPβ二聚体的生成取决于APP-棕榈酸酯化,而总sAPPβ的生成却不依赖于APP-棕榈酸酯化。由于BACE1对palAPP二聚体的偏好高于总APP,因此与BACE1抑制剂相反,palAPP二聚体可以作为APP的有效β裂解抑制剂的新靶标。

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