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阿尔茨海默病样病理学的AD11转基因小鼠模型中蛋白质复合物的时间动态变化。

Time dynamics of protein complexes in the AD11 transgenic mouse model for Alzheimer's disease like pathology.

作者信息

Arisi Ivan, D'Onofrio Mara, Brandi Rossella, Cattaneo Antonino, Bertolazzi Paola, Cumbo Fabio, Felici Giovanni, Guerra Concettina

机构信息

Genomics Facility, European Brain Research Institute (EBRI) Rita Levi-Montalcini, Via del Fosso di Fiorano, 64, 00143, Rome, Italy.

Neurotrophic Factors and Neurodegenerative Diseases Unit, EBRI, Rome, Italy.

出版信息

BMC Neurosci. 2015 Apr 29;16:28. doi: 10.1186/s12868-015-0155-5.

Abstract

BACKGROUND

Many approaches exist to integrate protein-protein interaction data with other sources of information, most notably with gene co-expression data, to obtain information on network dynamics. It is of interest to look at groups of interacting gene products that form a protein complex. We were interested in applying new tools to the characterization of pathogenesis and dynamic events of an Alzheimer's-like neurodegenerative model, the AD11 mice, expressing an anti-NGF monoclonal antibody. The goal was to quantify the impact of neurodegeneration on protein complexes, by measuring the correlation between gene expression data by different metrics.

RESULTS

Data were extracted from the gene expression profile of AD11 brain, obtained by Agilent microarray, at 1, 3, 6, 15 months of age. For genes coding proteins in complexes, the correlation matrix of pairwise expression was computed. The dynamics between correlation matrices at different time points was evaluated: paired T-test between average correlation levels and a normalized Euclidean distance with z-score. We unveiled a differential wiring of interactions in a set of complexes, whose network structure discriminates between transgenic and control mice. Furthermore, we analyzed the dynamics of gene expression values, by looking at changes in gene-to-gene correlation over time and identified those complexes that exhibit a different timedependent behaviour between transgenic and controls. The most significant changes in correlation dynamics are concentrated in the early stage of disease, with higher correlation in AD11 mice compared to controls. Many complexes go through dynamic changes over time, showing the role of the dysfunctional immunoproteasome, as early neurodegenerative disease event. Furthermore, this analysis shows key events in the neurodegeneration process of the AD11 model, by identifying significant differences in co-expression values of other complexes, such as parvulin complex, with a role in protein misfolding and proteostasis, and of complexes involved in transcriptional mechanisms.

CONCLUSIONS

We have proposed a novel approach to analyze the network structure of protein complexes, by two different measures to evaluate the dynamics of gene-gene correlation matrices from gene expression profiles. The methodology was able to investigate the re-organization of interactions within protein complexes in the AD11 model of neurodegeneration.

摘要

背景

存在多种方法可将蛋白质 - 蛋白质相互作用数据与其他信息源整合,最显著的是与基因共表达数据整合,以获取有关网络动态的信息。研究形成蛋白质复合物的相互作用基因产物组很有意义。我们有兴趣应用新工具来表征表达抗神经生长因子单克隆抗体的类阿尔茨海默病神经退行性模型AD11小鼠的发病机制和动态事件。目标是通过用不同指标测量基因表达数据之间的相关性,来量化神经退行性变对蛋白质复合物的影响。

结果

从1、3、6、15月龄的AD11脑的基因表达谱中提取数据,该基因表达谱通过安捷伦微阵列获得。对于编码复合物中蛋白质的基因,计算成对表达的相关矩阵。评估不同时间点相关矩阵之间的动态变化:平均相关水平之间的配对t检验以及具有z分数的归一化欧几里得距离。我们揭示了一组复合物中相互作用的差异连接,其网络结构区分转基因小鼠和对照小鼠。此外,我们通过观察基因间相关性随时间的变化来分析基因表达值的动态变化,并确定那些在转基因小鼠和对照小鼠之间表现出不同时间依赖性行为的复合物。相关动态中最显著的变化集中在疾病早期,与对照相比,AD11小鼠中的相关性更高。许多复合物随时间经历动态变化,显示功能失调的免疫蛋白酶体作为早期神经退行性疾病事件的作用。此外,该分析通过识别其他复合物(如在蛋白质错误折叠和蛋白质稳态中起作用的 parvulin 复合物)以及参与转录机制的复合物的共表达值的显著差异,揭示了AD11模型神经退行性变过程中的关键事件。

结论

我们提出了一种新方法,通过两种不同的措施来分析蛋白质复合物的网络结构,以评估来自基因表达谱的基因 - 基因相关矩阵的动态变化。该方法能够研究神经退行性变的AD11模型中蛋白质复合物内相互作用的重组。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/89bc/4436769/cec26d73809e/12868_2015_155_Fig1_HTML.jpg

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