Zhou Shaobo, Bailey Matthew J, Dunn Michael J, Preedy Victor R, Emery Peter W
Nutrition, Food and Health Research Centre, Kings College London, London, UK.
Proteomics. 2005 Jul;5(11):2739-47. doi: 10.1002/pmic.200401178.
We report the results of a systematic investigation to quantify the losses of protein during a well-established two-dimensional polyacrylamide gel electrophoresis (2-DE) procedure. Radioactively labelled proteins ([(14)C]bovine serum albumin and a homogenate prepared from the liver of a rat that had been injected with [(35)S]methionine) were used, and recovery was quantified by digesting pieces of gel in H(2)O(2) and subjecting the digests to liquid scintillation counting. When samples were loaded onto the first dimension immobilised pH gradient strips by in-gel rehydration, recovery of protein from the strips was 44-80% of the amount of protein loaded, depending on the amount of protein in the sample. Most of the unrecovered protein appeared to have adhered to the reswelling tray. Losses during isoelectric focusing (IEF) were much smaller (7-14%), although approximately 2% of the protein appeared to migrate from sample strips to adjacent blank strips in the focussing apparatus. A further 17-24% of the proteins were lost into the buffers during equilibration prior to running in the second dimension. Losses during the second dimension run and subsequent staining with SYPRO Ruby amounted to less than 10%. The overall loss during 2-DE was reduced by approximately 25% when proteins were loaded onto the IEF strips using sample cups instead of by in-gel rehydration. These extensive and variable losses during the 2-DE procedure mean that spot intensities on 2-DE gels cannot be used to derive reliable, quantitative information on the amounts of proteins present in the original sample.
我们报告了一项系统性研究的结果,该研究旨在量化在成熟的二维聚丙烯酰胺凝胶电泳(2-DE)过程中蛋白质的损失情况。使用了放射性标记的蛋白质([¹⁴C]牛血清白蛋白以及由注射了[³⁵S]甲硫氨酸的大鼠肝脏制备的匀浆),通过在H₂O₂中消化凝胶片段并对消化物进行液体闪烁计数来定量回收率。当通过凝胶内复水将样品加载到第一维固定pH梯度条上时,根据样品中蛋白质的量,从条带上回收的蛋白质为加载蛋白质总量的44 - 80%。大部分未回收的蛋白质似乎附着在了再水化托盘上。等电聚焦(IEF)过程中的损失要小得多(7 - 14%),尽管约2%的蛋白质似乎从样品条迁移到了聚焦装置中的相邻空白条带上。在进行二维电泳前的平衡过程中,又有17 - 24%的蛋白质损失到了缓冲液中。二维电泳运行及随后用SYPRO Ruby染色过程中的损失不到10%。当使用样品杯而非凝胶内复水将蛋白质加载到IEF条带上时,2-DE过程中的总体损失减少了约25%。2-DE过程中这些广泛且可变的损失意味着,2-DE凝胶上的斑点强度不能用于获取关于原始样品中蛋白质含量的可靠定量信息。