Rege Kaushal, Ladiwala Asif, Tugcu Nihal, Breneman Curt M, Cramer Steven M
Department of Chemical and Biological Engineering, Rensselaer Polytechnic Institute, 110 8th Street, Troy, NY 12180, USA.
J Chromatogr A. 2004 Apr 9;1033(1):19-28. doi: 10.1016/j.chroma.2003.12.071.
This paper employs a parallel batch screening technique for the identification of both selective and high-affinity displacers for a model binary mixture of proteins in a cation-exchange system. A variety of molecules were screened as possible displacers for the proteins ribonuclease A (RNAseA) and alpha-chymotrypsinogen A (alpha-chyA) on high performance Sepharose SP. The batch screening data for each protein was used to select leads for selective and high-affinity displacers and column experiments were carried out to evaluate the performance of the selected leads. The data from the batch displacements was also employed to generate quantitative structure-efficacy relationship (QSER) models based on a support vector machine regression approach. The resulting models had high correlation coefficients and were able to predict the behaviour of molecules not included in the training set. The descriptors selected in the QSER models for both proteins were examined to provide insights into factors influencing displacer selectivity in ion-exchange systems. The results presented in this paper demonstrate that this parallel batch screening-QSER approach can be employed for the identification of selective and high-affinity displacers for protein mixtures.
本文采用一种平行批量筛选技术,用于在阳离子交换系统中鉴定蛋白质模型二元混合物的选择性和高亲和力置换剂。在高性能琼脂糖SP上,筛选了多种分子作为蛋白质核糖核酸酶A(RNAseA)和α-胰凝乳蛋白酶原A(α-chyA)的可能置换剂。每种蛋白质的批量筛选数据用于选择选择性和高亲和力置换剂的先导物,并进行柱实验以评估所选先导物的性能。批量置换的数据还用于基于支持向量机回归方法生成定量构效关系(QSER)模型。所得模型具有高相关系数,能够预测训练集中未包含的分子的行为。研究了QSER模型中为两种蛋白质选择的描述符,以深入了解影响离子交换系统中置换剂选择性的因素。本文给出的结果表明,这种平行批量筛选-QSER方法可用于鉴定蛋白质混合物的选择性和高亲和力置换剂。