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靶向γ-分泌酶可触发阿尔茨海默病细胞和小鼠模型脑外泌体中寡聚APP-CTF的选择性富集。

Targeting γ-secretase triggers the selective enrichment of oligomeric APP-CTFs in brain extracellular vesicles from Alzheimer cell and mouse models.

作者信息

Lauritzen Inger, Bécot Anaïs, Bourgeois Alexandre, Pardossi-Piquard Raphaëlle, Biferi Maria-Grazia, Barkats Martine, Checler Fréderic

机构信息

1Institut de Pharmacologie Moléculaire et Cellulaire, CNRS-UMR7275, team labeled «Fondation pour la Recherche Médicale» et «Laboratoire d'excellence Distalz», Université de Nice-Sophia-Antipolis, Sophia-Antipolis, France.

Institut-Myologie, Paris, France.

出版信息

Transl Neurodegener. 2019 Dec 5;8:35. doi: 10.1186/s40035-019-0176-6. eCollection 2019.

Abstract

BACKGROUND

We recently demonstrated an endolysosomal accumulation of the β-secretase-derived APP C-terminal fragment (CTF) C99 in brains of Alzheimer disease (AD) mouse models. Moreover, we showed that the treatment with the γ-secretase inhibitor (D6) led to further increased endolysosomal APP-CTF levels, but also revealed extracellular APP-CTF-associated immunostaining. We here hypothesized that this latter staining could reflect extracellular vesicle (EV)-associated APP-CTFs and aimed to characterize these γ-secretase inhibitor-induced APP-CTFs.

METHODS

EVs were purified from cell media or mouse brains from vehicle- or D6-treated C99 or APP expressing cells/mice and analyzed for APP-CTFs by immunoblot. Combined pharmacological, immunological and genetic approaches (presenilin invalidation and C99 dimerization mutants (GXXXG)) were used to characterize vesicle-containing APP-CTFs. Subcellular APP-CTF localization was determined by immunocytochemistry.

RESULTS

Purified EVs from both AD cell or mouse models were enriched in APP-CTFs as compared to EVs from control cells/brains. Surprisingly, EVs from D6-treated cells not only displayed increased C99 and C99-derived C83 levels but also higher molecular weight (HMW) APP-CTF-immunoreactivities that were hardly detectable in whole cell extracts. Accordingly, the intracellular levels of HMW APP-CTFs were amplified by the exosomal inhibitor GW4869. By combined pharmacological, immunological and genetic approaches, we established that these HMW APP-CTFs correspond to oligomeric APP-CTFs composed of C99 and/or C83. Immunocytochemical analysis showed that monomers were localized mainly to the -Golgi network, whereas oligomers were confined to endosomes and lysosomes, thus providing an anatomical support for the selective recovery of HMW APP-CTFs in EVs. The D6-induced APP-CTF oligomerization and subcellular mislocalization was indeed due to γ-secretase blockade, since it similarly occurred in presenilin-deficient fibroblasts. Further, our data proposed that besides favoring APP-CTF oligomerization by preventing C99 proteolysis, γ-secretase inhibiton also led to a defective SorLA-mediated retrograde transport of HMW APP-CTFs from endosomal compartments to the TGN.

CONCLUSIONS

This is the first study to demonstrate the presence of oligomeric APP-CTFs in AD mouse models, the levels of which are selectively enriched in endolysosomal compartments including exosomes and amplified by γ-secretase inhibition. Future studies should evaluate the putative contribution of these exosome-associated APP-CTFs in AD onset, progression and spreading.

摘要

背景

我们最近证实在阿尔茨海默病(AD)小鼠模型的大脑中,β-分泌酶衍生的APP C末端片段(CTF)C99在内溶酶体中积累。此外,我们发现用γ-分泌酶抑制剂(D6)处理会导致内溶酶体APP-CTF水平进一步升高,但也揭示了细胞外APP-CTF相关的免疫染色。我们在此推测,后一种染色可能反映细胞外囊泡(EV)相关的APP-CTF,并旨在表征这些γ-分泌酶抑制剂诱导的APP-CTF。

方法

从用载体或D6处理的C99或APP表达细胞/小鼠的细胞培养基或小鼠大脑中纯化EV,并通过免疫印迹分析APP-CTF。采用联合药理学、免疫学和遗传学方法(早老素无效和C99二聚化突变体(GXXXG))来表征含囊泡的APP-CTF。通过免疫细胞化学确定亚细胞APP-CTF定位。

结果

与来自对照细胞/大脑的EV相比,来自AD细胞或小鼠模型的纯化EV富含APP-CTF。令人惊讶的是,来自D6处理细胞的EV不仅显示C99和C99衍生的C83水平增加,而且还显示出更高分子量(HMW)的APP-CTF免疫反应性,而这些在全细胞提取物中几乎检测不到。因此,外泌体抑制剂GW4869放大了HMW APP-CTF的细胞内水平。通过联合药理学、免疫学和遗传学方法,我们确定这些HMW APP-CTF对应于由C99和/或C83组成的寡聚体APP-CTF。免疫细胞化学分析表明,单体主要定位于高尔基体网络,而寡聚体局限于内体和溶酶体,从而为EV中HMW APP-CTF的选择性回收提供了解剖学支持。D6诱导的APP-CTF寡聚化和亚细胞定位错误确实是由于γ-分泌酶阻断,因为它在早老素缺陷的成纤维细胞中同样发生。此外,我们的数据表明,γ-分泌酶抑制除了通过阻止C99蛋白水解促进APP-CTF寡聚化外,还导致HMW APP-CTF从内体区室到反式高尔基体网络的SorLA介导的逆行转运缺陷。

结论

这是第一项证明AD小鼠模型中存在寡聚体APP-CTF的研究,其水平在内溶酶体区室(包括外泌体)中选择性富集,并通过γ-分泌酶抑制而放大。未来的研究应评估这些外泌体相关的APP-CTF在AD发病、进展和传播中的假定作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/794d/6894230/bb838b2a059f/40035_2019_176_Fig1_HTML.jpg

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