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淀粉样前体蛋白的成熟和加工受钾/钠超极化激活的环核苷酸门控离子通道2(HCN2)调控。

Maturation and processing of the amyloid precursor protein is regulated by the potassium/sodium hyperpolarization-activated cyclic nucleotide-gated ion channel 2 (HCN2).

作者信息

Frykman Susanne, Inoue Mitsuhiro, Ikeda Atsushi, Teranishi Yasuhiro, Kihara Takahiro, Lundgren Jolanta L, Yamamoto Natsuko G, Bogdanovic Nenad, Winblad Bengt, Schedin-Weiss Sophia, Tjernberg Lars O

机构信息

Karolinska Institutet, Dept. of Neurobiology, Care Sciences and Society, Center for Alzheimer Research, Division of Neurogeriatrics, Novum, Blickagången 6, 141 57, Huddinge, Sweden.

Karolinska Institutet, Dept. of Neurobiology, Care Sciences and Society, Center for Alzheimer Research, Division of Neurogeriatrics, Novum, Blickagången 6, 141 57, Huddinge, Sweden; Sumitomo Dainippon Pharma Co., Ltd., Drug Research Division, Osaka, Japan.

出版信息

Biochem Biophys Res Commun. 2017 Jan 29;483(1):352-358. doi: 10.1016/j.bbrc.2016.12.140. Epub 2016 Dec 23.

Abstract

The toxic amyloid β-peptide (Aβ) is a key player in Alzheimer Disease (AD) pathogenesis and selective inhibition of the production of this peptide is sought for. Aβ is produced by the sequential cleavage of the Aβ precursor protein (APP) by β-secretase (to yield APP-C-terminal fragment β (APP-CTFβ) and soluble APPβ (sAPPβ)) and γ-secretase (to yield Aβ). We reasoned that proteins that associate with γ-secretase are likely to regulate Aβ production and to be targets of pharmaceutical interventions and therefore performed a pull-down assay to screen for such proteins in rat brain. Interestingly, one of the purified proteins was potassium/sodium hyperpolarization-activated cyclic nucleotide-gated ion channel 2 (HCN2), which has been shown to be involved in epilepsy. We found that silencing of HCN2 resulted in decreased secreted Aβ levels. To further investigate the mechanism behind this reduction, we also determined the levels of full-length APP, sAPP and APP-CTF species after silencing of HCN2. A marked reduction in sAPP and APP-CTF, as well as glycosylated APP levels was detected. Decreased Aβ, sAPP and APP-CTF levels were also detected after treatment with the HCN2 inhibitor ZD7288. These results indicate that the effect on Aβ levels after HCN2 silencing or inhibition is due to altered APP maturation or processing by β-secretase rather than a direct effect on γ-secretase. However, HCN2 and γ-secretase were found to be in close proximity, as evident by proximity ligation assay and immunoprecipitation. In summary, our results indicate that silencing or inhibition of HCN2 affects APP processing and thereby could serve as a potential treatment strategy.

摘要

毒性淀粉样β肽(Aβ)是阿尔茨海默病(AD)发病机制中的关键因素,人们一直在寻求对该肽产生进行选择性抑制。Aβ是由β分泌酶(产生APP C末端片段β(APP-CTFβ)和可溶性APPβ(sAPPβ))和γ分泌酶(产生Aβ)对Aβ前体蛋白(APP)进行顺序切割而产生的。我们推测与γ分泌酶相关的蛋白质可能调节Aβ的产生并成为药物干预的靶点,因此进行了一项下拉试验以在大鼠脑中筛选此类蛋白质。有趣的是,纯化的蛋白质之一是钾/钠超极化激活环核苷酸门控离子通道2(HCN2),该通道已被证明与癫痫有关。我们发现沉默HCN2会导致分泌的Aβ水平降低。为了进一步研究这种降低背后的机制,我们还测定了沉默HCN2后全长APP、sAPP和APP-CTF种类的水平。检测到sAPP和APP-CTF以及糖基化APP水平显著降低。用HCN2抑制剂ZD7288处理后也检测到Aβ、sAPP和APP-CTF水平降低。这些结果表明,HCN2沉默或抑制后对Aβ水平的影响是由于APP成熟或β分泌酶加工的改变,而不是对γ分泌酶的直接影响。然而,通过邻近连接分析和免疫沉淀发现HCN2和γ分泌酶紧密相邻。总之,我们的结果表明,沉默或抑制HCN2会影响APP的加工,因此可作为一种潜在的治疗策略。

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