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5xFAD 小鼠脑区的蛋白质组学分析显示溶酶体相关蛋白 Arl8b 可作为阿尔茨海默病的候选生物标志物。

A proteomics analysis of 5xFAD mouse brain regions reveals the lysosome-associated protein Arl8b as a candidate biomarker for Alzheimer's disease.

机构信息

Neuroproteomics, Max Delbrück Center for Molecular Medicine in the Helmholtz Association, Robert-Rössle-Straße 10, 13125, Berlin, Germany.

Core Unit Bioinformatics, Berlin Institute of Health at Charité - University Medicine Berlin, Charitéplatz 1, 10117, Berlin, Germany.

出版信息

Genome Med. 2023 Jul 20;15(1):50. doi: 10.1186/s13073-023-01206-2.

Abstract

BACKGROUND

Alzheimer's disease (AD) is characterized by the intra- and extracellular accumulation of amyloid-β (Aβ) peptides. How Aβ aggregates perturb the proteome in brains of patients and AD transgenic mouse models, remains largely unclear. State-of-the-art mass spectrometry (MS) methods can comprehensively detect proteomic alterations, providing relevant insights unobtainable with transcriptomics investigations. Analyses of the relationship between progressive Aβ aggregation and protein abundance changes in brains of 5xFAD transgenic mice have not been reported previously.

METHODS

We quantified progressive Aβ aggregation in hippocampus and cortex of 5xFAD mice and controls with immunohistochemistry and membrane filter assays. Protein changes in different mouse tissues were analyzed by MS-based proteomics using label-free quantification; resulting MS data were processed using an established pipeline. Results were contrasted with existing proteomic data sets from postmortem AD patient brains. Finally, abundance changes in the candidate marker Arl8b were validated in cerebrospinal fluid (CSF) from AD patients and controls using ELISAs.

RESULTS

Experiments revealed faster accumulation of Aβ42 peptides in hippocampus than in cortex of 5xFAD mice, with more protein abundance changes in hippocampus, indicating that Aβ42 aggregate deposition is associated with brain region-specific proteome perturbations. Generating time-resolved data sets, we defined Aβ aggregate-correlated and anticorrelated proteome changes, a fraction of which was conserved in postmortem AD patient brain tissue, suggesting that proteome changes in 5xFAD mice mimic disease-relevant changes in human AD. We detected a positive correlation between Aβ42 aggregate deposition in the hippocampus of 5xFAD mice and the abundance of the lysosome-associated small GTPase Arl8b, which accumulated together with axonal lysosomal membranes in close proximity of extracellular Aβ plaques in 5xFAD brains. Abnormal aggregation of Arl8b was observed in human AD brain tissue. Arl8b protein levels were significantly increased in CSF of AD patients.

CONCLUSIONS

We report a comprehensive biochemical and proteomic investigation of hippocampal and cortical brain tissue derived from 5xFAD transgenic mice, providing a valuable resource to the neuroscientific community. We identified Arl8b, with significant abundance changes in 5xFAD and AD patient brains. Arl8b might enable the measurement of progressive lysosome accumulation in AD patients and have clinical utility as a candidate biomarker.

摘要

背景

阿尔茨海默病(AD)的特征是细胞内和细胞外淀粉样β(Aβ)肽的积累。Aβ 聚集如何扰乱患者和 AD 转基因小鼠模型大脑中的蛋白质组,在很大程度上仍不清楚。最先进的质谱(MS)方法可以全面检测蛋白质组变化,提供用转录组学研究无法获得的相关见解。以前没有报道过分析 5xFAD 转基因小鼠大脑中进行性 Aβ 聚集与蛋白质丰度变化之间的关系。

方法

我们通过免疫组织化学和膜滤过测定法,定量分析 5xFAD 小鼠和对照小鼠海马体和皮质中的进行性 Aβ 聚集。使用基于 MS 的蛋白质组学的无标记定量法分析不同小鼠组织中的蛋白质变化;使用已建立的管道处理产生的 MS 数据。将结果与来自 AD 患者死后脑组织的现有蛋白质组数据集进行对比。最后,使用 ELISA 法在 AD 患者和对照的脑脊液(CSF)中验证候选标志物 Arl8b 的丰度变化。

结果

实验表明,5xFAD 小鼠海马体中 Aβ42 肽的积累速度比皮质快,海马体中蛋白质丰度变化更多,表明 Aβ42 聚集体沉积与大脑区域特异性蛋白质组扰动有关。通过生成时间分辨数据集,我们定义了与 Aβ 聚集体相关和负相关的蛋白质组变化,其中一部分在 AD 患者的脑组织中是保守的,这表明 5xFAD 小鼠的蛋白质组变化模拟了人类 AD 的疾病相关变化。我们检测到 5xFAD 小鼠海马体中 Aβ42 聚集体沉积与溶酶体相关的小 GTPase Arl8b 的丰度之间存在正相关,Arl8b 与轴突溶酶体膜一起在 5xFAD 脑内的细胞外 Aβ 斑块附近聚集。在人类 AD 脑组织中观察到 Arl8b 的异常聚集。AD 患者的 CSF 中 Arl8b 蛋白水平显著升高。

结论

我们报告了对 5xFAD 转基因小鼠海马体和皮质脑组织进行的全面生化和蛋白质组学研究,为神经科学界提供了宝贵的资源。我们鉴定了 Arl8b,其在 5xFAD 和 AD 患者大脑中丰度变化显著。Arl8b 可能能够测量 AD 患者进行性溶酶体积累,并作为候选生物标志物具有临床应用价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/56c1/10357615/00fe082d9e03/13073_2023_1206_Fig1_HTML.jpg

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