Department of Biotechnology, Delft University of Technology, Julianalaan 67, 2628 BC, Delft, The Netherlands.
J Chromatogr A. 2011 Dec 9;1218(49):8958-73. doi: 10.1016/j.chroma.2011.08.016. Epub 2011 Aug 16.
Salt-induced protein precipitation and hydrophobic interaction chromatography (HIC) are two widely used methods for protein purification. In this study, salt effects in protein precipitation and HIC were investigated for a broad combination of proteins, salts and HIC resins. Interrelation between the critical thermodynamic salting out parameters in both techniques was equally investigated. Protein precipitation data were obtained by a high-throughput technique employing 96-well microtitre plates and robotic liquid handling technology. For the same protein-salt combinations, isocratic HIC experiments were performed using two or three different commercially available stationary phases-Phenyl Sepharose low sub, Butyl Sepharose and Resource Phenyl. In general, similar salt effects and deviations from the lyotropic series were observed in both separation methods, for example, the reverse Hofmeister effect reported for lysozyme below its isoelectric point and at low salt concentrations. The salting out constant could be expressed in terms of the preferential interaction parameter in protein precipitation, showing that the former is, in effect, the net result of preferential interaction of a protein with water molecules and salt ions in its vicinity. However, no general quantitative interrelation was found between salting out parameters or the number of released water molecules in protein precipitation and HIC. In other words, protein solubility and HIC retention factor could not be quantitatively interrelated, although for some proteins, regular trends were observed across the different resins and salt types.
盐诱导的蛋白质沉淀和疏水相互作用层析(HIC)是两种广泛用于蛋白质纯化的方法。在这项研究中,研究了广泛的蛋白质、盐和 HIC 树脂组合中蛋白质沉淀和 HIC 中的盐效应。同样研究了这两种技术中关键热力学盐析参数之间的相互关系。蛋白质沉淀数据通过使用 96 孔微量滴定板和机器人液体处理技术的高通量技术获得。对于相同的蛋白质-盐组合,使用两种或三种不同的商业上可获得的固定相-苯基 Sepharose low sub、丁基 Sepharose 和 Resource Phenyl 进行等度 HIC 实验。一般来说,两种分离方法都观察到了相似的盐效应和偏离溶致序列的现象,例如,低于等电点和低盐浓度下溶菌酶的反向 Hofmeister 效应。盐析常数可以用蛋白质沉淀中的优先相互作用参数来表示,表明前者实际上是蛋白质与其附近水分子和盐离子优先相互作用的净结果。然而,在蛋白质沉淀和 HIC 中的盐析参数或释放的水分子数量之间没有发现一般的定量关系。换句话说,蛋白质溶解度和 HIC 保留因子不能定量相关,尽管对于某些蛋白质,在不同的树脂和盐类型之间观察到了一些规律趋势。