Tessier Peter M, Verruto Vincent J, Sandler Stanley I, Lenhoff Abraham M
Center for Molecular and Engineering Thermodynamics, Department of Chemical Engineering University of Delaware, Newark, Delaware 19716, USA.
Biotechnol Bioeng. 2004 Aug 5;87(3):303-10. doi: 10.1002/bit.20115.
The role of protein-protein interactions in membrane separations of protein mixtures remains incompletely understood, largely due to the difficulty of characterizing protein self- and, especially, cross-association. Recently, a novel technique, cross-interaction chromatography, has been developed to measure weak protein cross-association in terms of the osmotic second virial cross-coefficient. In this work the relationship between protein cross-association and the sieving behavior of lysozyme in the presence of BSA has been investigated. Sieving coefficients were measured using a stirred diafiltration cell over a range of pH and ionic strength, and a striking correlation between the lysozyme sieving and second virial cross-coefficients for BSA/lysozyme mixtures has been found: when the protein cross-interactions are most attractive (negative second virial cross-coefficient), the lysozyme sieving coefficients are lowest, and vice versa. The correlation between the sieving and second virial cross-coefficients may be due to the physically similar environments in the chromatography and filtration experiments since one protein is passed through a concentrated region of the second protein either immobilized on the column or accumulated at the membrane surface, and the migration rate of the mobile protein in both cases is influenced by protein cross-association. This study represents the first time that molecular interactions in binary mixtures have been related directly to filtration behavior, and may provide a useful approach to optimize the separation of other binary protein mixtures.
蛋白质 - 蛋白质相互作用在蛋白质混合物的膜分离中所起的作用仍未被完全理解,这主要是由于难以表征蛋白质的自缔合,尤其是交叉缔合。最近,一种新技术——交叉相互作用色谱法已被开发出来,用于根据渗透第二维里交叉系数来测量弱蛋白质交叉缔合。在这项工作中,研究了在牛血清白蛋白(BSA)存在下蛋白质交叉缔合与溶菌酶筛分行为之间的关系。使用搅拌式渗滤池在一系列pH值和离子强度范围内测量筛分系数,并且发现了BSA/溶菌酶混合物的溶菌酶筛分与第二维里交叉系数之间存在显著相关性:当蛋白质交叉相互作用最具吸引力时(负的第二维里交叉系数),溶菌酶的筛分系数最低,反之亦然。筛分与第二维里交叉系数之间的相关性可能是由于色谱法和过滤实验中的物理环境相似,因为一种蛋白质会穿过固定在柱上或聚集在膜表面的第二种蛋白质的浓缩区域,并且在这两种情况下流动蛋白质的迁移速率都受蛋白质交叉缔合的影响。这项研究首次将二元混合物中的分子相互作用直接与过滤行为联系起来,并且可能为优化其他二元蛋白质混合物的分离提供一种有用的方法。