Xiao Yunzhi, Freed Alexander S, Jones Tara Tibbs, Makrodimitris Kostantinos, O'Connell John P, Fernandez Erik J
Department of Chemical Engineering, University of Virginia, 102 Engineers' Way, Charlottesville, 22904-4741, USA.
Biotechnol Bioeng. 2006 Apr 20;93(6):1177-89. doi: 10.1002/bit.20826.
Hydrophobic interaction chromatography (HIC) is known to be potentially denaturing to proteins, but the effects of mobile phase conditions on chromatographic behavior are not well understood. In this study, we apply a model describing the effects of secondary protein unfolding equilibrium on chromatographic behavior, including the effects of salt concentration on both stability and adsorption. We use alpha-lactalbumin as a model protein that in the presence and absence of calcium, allows evaluation of adsorption parameters for folded and unfolded species independently. The HIC adsorption equilibrium under linear binding conditions and solution phase protein stability have been obtained from a combination of literature and new experiments. The effect of salt concentration on protein stability and the rate constant for unfolding on the chromatographic surface have been determined by fitting the model to isocratic chromatography data under marginally stable conditions. The model successfully describes the effects of added calcium and ammonium sulfate. The results demonstrate the importance of considering the effects on stability of mobile phase modifiers when applying HIC to marginally stable
疏水相互作用色谱法(HIC)已知可能会使蛋白质变性,但流动相条件对色谱行为的影响尚未得到充分理解。在本研究中,我们应用了一个模型来描述蛋白质二级结构展开平衡对色谱行为的影响,包括盐浓度对稳定性和吸附的影响。我们使用α-乳白蛋白作为模型蛋白,在有钙和无钙的情况下,能够独立评估折叠态和未折叠态物种的吸附参数。通过结合文献和新的实验,我们获得了线性结合条件下的HIC吸附平衡以及溶液相蛋白质稳定性。通过将模型拟合到略微稳定条件下的等度色谱数据,确定了盐浓度对蛋白质稳定性和色谱表面展开速率常数的影响。该模型成功地描述了添加钙和硫酸铵的影响。结果表明,在将HIC应用于略微稳定的情况时,考虑流动相改性剂对稳定性的影响非常重要。