Yamamoto Shuichi, Fujii Sachie, Yoshimoto Noriko, Akbarzadehlaleh Parvin
Bioprocess Engineering Laboratory, School of Engineering and Graduate School of Medicine, Yamaguchi University, Ube 755-8611, Japan.
J Biotechnol. 2007 Oct 31;132(2):196-201. doi: 10.1016/j.jbiotec.2007.05.028. Epub 2007 Jun 5.
As it is important to understand how protein conformational changes affect the separation performance in ion exchange chromatography (IEC), we investigated two model systems, unfolded proteins (lysozyme and bovine serum albumin) with urea and dithiothreitol, and PEGylated proteins (lysozyme attached with polyethyleneglycol molecular weight 5000). Linear gradient elution IEC experiments were carried out and the data were analysed by our model previously presented in order to obtain the binding site value B and the peak salt concentration I(R). Unfolded proteins (bovine serum albumin and lysozyme) with urea and dithiothreitol showed weaker retention and larger binding site values compared with the values for native proteins. Multiple PEGylated lysozyme peaks were separated, and eluted earlier than the native peak appeared. There is a good correlation between B and I(R) for PEGylated lysozymes.
由于了解蛋白质构象变化如何影响离子交换色谱(IEC)中的分离性能很重要,我们研究了两个模型系统,即添加尿素和二硫苏糖醇的未折叠蛋白(溶菌酶和牛血清白蛋白),以及聚乙二醇化蛋白(连接有分子量为5000的聚乙二醇的溶菌酶)。进行了线性梯度洗脱IEC实验,并通过我们之前提出的模型对数据进行分析,以获得结合位点值B和峰盐浓度I(R)。与天然蛋白相比,添加尿素和二硫苏糖醇的未折叠蛋白(牛血清白蛋白和溶菌酶)表现出较弱的保留和更大的结合位点值。多个聚乙二醇化溶菌酶峰被分离出来,并且比天然峰出现得更早洗脱。聚乙二醇化溶菌酶的B和I(R)之间存在良好的相关性。