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Pilot study of the Human Proteome Organisation Brain Proteome Project: Applying different 2-DE techniques to monitor proteomic changes during murine brain development

机译:人类蛋白质组学组织脑蛋白质组计划的先导研究:应用不同的2-DE技术监测鼠脑发育过程中的蛋白质组变化

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The Human Proteome Organisation Brain Proteome Project aims at coordinating neuroproteomic activities with respect to analysis of development, aging, and evolution in human and mice and at analysing normal aging processes as well as neurodegenerative diseases. Our group participated in the mouse pilot study of this project using two different 2-DE systems, to find out the optimal conditions for comprehensive gel-based differential proteome analysis. Besides the assessment of the best methodical conditions the question of "How many biological replicate analyses have to be performed to get reliable statistically validated results?" was addressed. In total 420 differences were detected in all analyses. Both 2-DE methods were found to be suitable for comprehensive differential proteome analysis. Nevertheless, each of the methods showed substantial advantages and disadvantages resulting in the fact that modification of both systems is essential. From our results we can draw the conclusions that for the future optimal quantitative differential gel-based brain proteome analyses the sample preparation has to be slightly changed, the resolution of the first as well as the second dimension has to be advanced, the number of experiments has to be increased and that the 2D-DIGE system should be applied.
机译:人类蛋白质组组织脑蛋白质组项目旨在协调神经蛋白质组活动,以分析人和小鼠的发育,衰老和进化,并分析正常的衰老过程以及神经退行性疾病。我们的小组使用两个不同的2-DE系统参与了该项目的小鼠试验研究,以寻找基于凝胶的全面差异蛋白质组分析的最佳条件。除了评估最佳方法论条件外,“必须进行多少次生物学重复分析才能获得可靠的经统计验证的结果?”的问题。已解决。在所有分析中总共检测到420个差异。发现这两种2-DE方法均适用于全面的差异蛋白质组分析。然而,每种方法都显示出实质性的优点和缺点,这导致必须修改两个系统。从我们的结果中可以得出结论,对于未来基于定量差异凝胶的最佳定量脑蛋白质组分析,样品制备必须稍作更改,第一维和第二维的分辨率必须提高,实验数量必须增加2D-DIGE系统。

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