Hong Guangfeng, Gao Mingxia, Yan Guoquan, Guan Xia, Tao Qian, Zhang Xiangmin
Department of Chemistry, Fudan University, Shanghai 200433, China.
Se Pu. 2010 Feb;28(2):158-62. doi: 10.3724/sp.j.1123.2012.00158.
In order to optimize two-dimensional liquid chromatographic (2D-LC) columns for highly efficient separation of proteins, several liquid chromatographic columns were investigated and evaluated. Weak anion-exchange (WAX) column was chosen as the first dimension because of its extensive protein separation power. By comparison of different WAX chromatographic columns for human liver protein separation, TSKgel DEAE-5PW column was selected as the first dimension of a 2D-LC system. For the second dimension, ten typical reversed-phase (RP) LC columns (250 mm x 4.6 mm, 5 microm, 30 nm) were investigated and evaluated. Their silica based RP stationary phases were butyl (C4), octyl (C8) or octadecyl (C18). To evaluate the retention behavior and non-specific protein adsorption ability of these ten columns, four neutral compounds (uracil, nitrobenzene, naphthalene and fluorene) and three standard proteins (cytochrome C, myoglobin and albumin from chicken egg white) were adopted and separated by RPLC. Meantime, WAX fractions were used to investigate the separation ability of different alkyl-bonded silica stationary phase columns for complex protein samples. By comparison of column separation efficiency, adsorption of intact proteins and sample analysis, Jupiter 300 C4 column was finally employed for its excellent separation ability. Optimization of WAX and RPLC columns offers reliable foundation for the construction of 2D-LC protein separation systems.
为了优化二维液相色谱(2D-LC)柱以实现蛋白质的高效分离,研究并评估了几种液相色谱柱。弱阴离子交换(WAX)柱因其强大的蛋白质分离能力被选作第一维。通过比较不同的WAX色谱柱对人肝蛋白质的分离效果,TSKgel DEAE-5PW柱被选为二维液相色谱系统的第一维。对于第二维,研究并评估了十种典型的反相(RP)液相色谱柱(250 mm×4.6 mm,5μm,30 nm)。它们基于硅胶的反相固定相为丁基(C4)、辛基(C8)或十八烷基(C18)。为了评估这十种色谱柱的保留行为和非特异性蛋白质吸附能力,采用了四种中性化合物(尿嘧啶、硝基苯、萘和芴)和三种标准蛋白质(细胞色素C、肌红蛋白和鸡蛋白白蛋白),并通过反相液相色谱进行分离。同时,利用WAX馏分研究了不同烷基键合硅胶固定相色谱柱对复杂蛋白质样品的分离能力。通过比较色谱柱的分离效率、完整蛋白质的吸附情况和样品分析结果,最终选用了分离能力出色的Jupiter 300 C4柱。WAX柱和反相液相色谱柱的优化为二维液相色谱蛋白质分离系统的构建提供了可靠的基础。