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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Reduced Alzheimer's disease ss-amyloid deposition in transgenic mice expressing S-palmitoylation-deficient APH1aL and nicastrin.
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Reduced Alzheimer's disease ss-amyloid deposition in transgenic mice expressing S-palmitoylation-deficient APH1aL and nicastrin.

机译:在表达S-棕榈酰基缺乏APH1AL和Nicastrin的转基因小鼠中降低阿尔茨海默病SS-淀粉样蛋白沉积。

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摘要

Sequential cleavage of amyloid precursor protein by beta- and gamma-secretases generates beta-amyloid peptides (Abeta), which accumulate in the brains of patients with Alzheimer's disease. We recently identified S-palmitoylation of two gamma-secretase subunits, APH1 and nicastrin. S-Palmitoylation is an essential posttranslational modification for the proper trafficking and function of many neuronal proteins. In cultured cell lines, lack of S-palmitoylation causes instability of nascent APH1 and nicastrin but does not affect gamma-secretase processing of amyloid precursor protein. To determine the importance of gamma-secretase S-palmitoylation for Abeta deposition in the brain, we generated transgenic mice coexpressing human wild-type or S-palmitoylation-deficient APH1aL and nicastrin in neurons in the forebrain. We found that lack of S-palmitoylation did not impair the ability of APH1aL and nicastrin to form enzymatically active protein complexes with endogenous presenilin 1 and PEN2 or affect the localization of gamma-secretase subunits in dendrites and axons of cortical neurons. When we crossed these mice with 85Dbo transgenic mice, which coexpress familial Alzheimer's disease-causing amyloid precursor protein and presenilin 1 variants, we found that coexpression of wild-type or mutant APH1aL and nicastrin led to marked stabilization of transgenic presenilin 1 in the brains of double-transgenic mice. Interestingly, we observed a moderate, but significant, reduction in amyloid deposits in the forebrain of mice expressing S-palmitoylation-deficient gamma-secretase subunits compared with mice overexpressing wild-type subunits, as well as a reduction in the levels of insoluble Abeta(40-42). These results indicate that gamma-secretase S-palmitoylation modulates Abeta deposition in the brain.
机译:β-和γ-分泌酶的淀粉样蛋白前体蛋白的顺序切割产生β-淀粉样肽(ABETA),其在阿尔茨海默病患者的患者中积聚。我们最近确定了两个γ分泌酶亚基,APH1和Nicastrin的S-Phalitoylation。 S-Phalitoylation是对许多神经元蛋白的适当贩运和功能的必要后期改性。在培养的细胞系中,缺乏S-棕榈酰化导致鼻塞APH1和尼卡斯汀的不稳定性,但不影响淀粉样蛋白前体蛋白的γ分泌酶加工。为了确定γ-分泌酶S-Phalitailation在脑中沉积的γ-分泌酶S-棕榈酰基的重要性,我们在前脑中的神经元中共同的转基因小鼠共表入人类野生型或S-棕榈酰基缺乏症APH1AL和Nicastrin。我们发现缺乏S-棕榈酰胺并不损害APH1AL和NICASTRIN与内源性PRESENILIN 1和PEN2形成酶活性蛋白质复合物的能力,或者影响肠道分泌酶亚基的定位在皮质神经元的树枝状和轴突中。当我们用85dbo转基因小鼠越过这些小鼠时,其中共同表达了家族性阿尔茨海默氏症的淀粉样蛋白前体蛋白和Presenilin 1变体时,我们发现野生型或突变体APH1AL和Nicastrin的共表达导致转基因预染色蛋白1的稳定性双转基因小鼠。有趣的是,与过表达野生型亚基的小鼠相比,我们观察到表达S-palmitoylation缺陷型γ分泌酶亚单位的小鼠前脑中淀粉样沉积物中的温和性,但显着降低,以及不溶性ABETA水平的降低( 40-42)。这些结果表明γ-分泌酶的S-Phalitoylation调节大脑中的Abeta沉积。

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