Institute for Biochemistry, University of Applied Sciences Mannheim, Mannheim, Germany.
J Sep Sci. 2014 Jan;37(1-2):5-13. doi: 10.1002/jssc.201301007.
The separation of proteins by internally and externally generated pH gradients in chromatofocusing on ion-exchange columns is a well-established analytical method with a large number of applications. In this work, a stoichiometric displacement model was used to describe the retention behavior of lysozyme on SP Sepharose FF and a monoclonal antibody on Fractogel SO3 (S) in linear salt and pH gradient elution. The pH dependence of the binding charge B in the linear gradient elution model is introduced using a protein net charge model, while the pH dependence of the equilibrium constant is based on a thermodynamic approach. The model parameter and pH dependences are calculated from linear salt gradient elutions at different pH values as well as from linear pH gradient elutions at different fixed salt concentrations. The application of the model for the well-characterized protein lysozyme resulted in almost identical model parameters based on either linear salt or pH gradient elution data. For the antibody, only the approach based on linear pH gradients is feasible because of the limited pH range useful for salt gradient elution. The application of the model for the separation of an acid variant of the antibody from the major monomeric form is discussed.
在离子交换柱上的聚焦层析中,通过内部和外部产生的 pH 梯度分离蛋白质是一种成熟的分析方法,有许多应用。在这项工作中,使用化学计量置换模型来描述溶菌酶在 SP Sepharose FF 上和单克隆抗体在 Fractogel SO3(S)上的保留行为,该模型在线性盐和 pH 梯度洗脱中使用。线性梯度洗脱模型中的结合电荷 B 的 pH 依赖性使用蛋白质净电荷模型引入,而平衡常数的 pH 依赖性基于热力学方法。模型参数和 pH 依赖性是根据不同 pH 值下的线性盐梯度洗脱以及不同固定盐浓度下的线性 pH 梯度洗脱计算得到的。该模型在具有良好特征的蛋白质溶菌酶上的应用导致基于线性盐或 pH 梯度洗脱数据的几乎相同的模型参数。对于抗体,由于盐梯度洗脱的有效 pH 范围有限,因此仅基于线性 pH 梯度的方法是可行的。讨论了该模型在分离抗体的酸性变体与主要单体形式方面的应用。