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Total Protein Analysis as a Reliable Loading Control for Quantitative Fluorescent Western Blotting

机译:总蛋白分析作为定量荧光Western印迹的可靠上样控制

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摘要

Western blotting has been a key technique for determining the relative expression of proteins within complex biological samples since the first publications in 1979. Recent developments in sensitive fluorescent labels, with truly quantifiable linear ranges and greater limits of detection, have allowed biologists to probe tissue specific pathways and processes with higher resolution than ever before. However, the application of quantitative Western blotting (QWB) to a range of healthy tissues and those from degenerative models has highlighted a problem with significant consequences for quantitative protein analysis: how can researchers conduct comparative expression analyses when many of the commonly used reference proteins (e.g. loading controls) are differentially expressed? Here we demonstrate that common controls, including actin and tubulin, are differentially expressed in tissues from a wide range of animal models of neurodegeneration. We highlight the prevalence of such alterations through examination of published “–omics” data, and demonstrate similar responses in sensitive QWB experiments. For example, QWB analysis of spinal cord from a murine model of Spinal Muscular Atrophy using an Odyssey scanner revealed that beta-actin expression was decreased by 19.3±2% compared to healthy littermate controls. Thus, normalising QWB data to β-actin in these circumstances could result in ‘skewing’ of all data by ∼20%. We further demonstrate that differential expression of commonly used loading controls was not restricted to the nervous system, but was also detectable across multiple tissues, including bone, fat and internal organs. Moreover, expression of these “control” proteins was not consistent between different portions of the same tissue, highlighting the importance of careful and consistent tissue sampling for QWB experiments. Finally, having illustrated the problem of selecting appropriate single protein loading controls, we demonstrate that normalisation using total protein analysis on samples run in parallel with stains such as Coomassie blue provides a more robust approach.
机译:自1979年首次发表以来,蛋白质印迹法一直是测定复杂生物样品中蛋白质相对表达的一项关键技术。灵敏荧光标记物的最新发展,具有真正可量化的线性范围和更大的检测限,已使生物学家能够探测组织特异性途径和过程比以往任何时候都具有更高的分辨率。但是,定量Western blotting(QWB)在一系列健康组织和变性模型中的应用突出了一个问题,该问题对定量蛋白质分析具有重大影响:当许多常用的参考蛋白质(例如加载控件)是否有差异表示?在这里,我们证明了常见的对照,包括肌动蛋白和微管蛋白,在多种神经变性动物模型的组织中差异表达。我们通过检查已发布的“-组学”数据强调了这种改变的普遍性,并在敏感的QWB实验中证明了类似的反应。例如,使用Odyssey扫描仪对来自脊髓性肌萎缩症小鼠模型的脊髓进行QWB分析,发现与健康同窝对照相比,β-肌动蛋白表达降低了19.3±2%。因此,在这种情况下,将QWB数据标准化为β-肌动蛋白可导致所有数据“偏斜”约20%。我们进一步证明,常用加载控件的差异表达不仅限于神经系统,而且在包括骨骼,脂肪和内部器官在内的多个组织中也可以检测到。此外,这些“对照”蛋白的表达在同一组织的不同部分之间不一致,这突出表明了对QWB实验进行仔细且一致的组织采样的重要性。最后,说明了选择合适的单一蛋白质上样对照的问题后,我们证明了对与染色剂(例如考马斯蓝)平行运行的样品使用总蛋白质分析进行归一化处理提供了更可靠的方法。

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