Rämsch C, Kleinelanghorst L B, Knieps E A, Thömmes J, Kula M R
Institute of Enzymetechnology, Heinrich-Heine Universität Düsseldorf, D-52428 Jülich, Germany.
Biotechnol Prog. 1999 May-Jun;15(3):493-9. doi: 10.1021/bp990030+.
During recombinant Escherichia coli fermentation with high expression levels, inclusion bodies are often formed. Aqueous two-phase systems have been used in the presence of urea for the initial recovery steps. To investigate phase behavior of such systems we determined phase diagrams of poly(ethylene glycol) (PEG)/sodium sulfate/urea/water and PEG/dextran T-500 (DEX)/urea/phosphate buffer/water at different concentrations of urea and different molecular weight of PEG. PEG/Na2SO4 aqueous two-phase systems could be obtained including up to 30% w/w urea at 25 degrees C and PEG/dextran T-500 up to 35% w/w urea. The binodial was displaced toward higher concentrations with increasing urea concentrations. The partition coefficient of urea was near unity. An unstable mutant of T4-lysozyme with an amino acid replacement in the core (V149T) was used to analyze the effect of phase components on the conformation of the enzyme. We showed that partitioning of tryptophan was not dependent on the concentration of urea in the phase system.
在高表达水平的重组大肠杆菌发酵过程中,经常会形成包涵体。水相两相系统已被用于在尿素存在下的初始回收步骤。为了研究此类系统的相行为,我们测定了聚乙二醇(PEG)/硫酸钠/尿素/水和PEG/葡聚糖T-500(DEX)/尿素/磷酸盐缓冲液/水在不同尿素浓度和不同分子量PEG下的相图。在25℃时,PEG/Na2SO4水相两相系统可含有高达30% w/w的尿素,PEG/葡聚糖T-500系统可含有高达35% w/w的尿素。随着尿素浓度的增加,双节线向更高浓度移动。尿素的分配系数接近1。使用在核心区域有氨基酸替换(V149T)的T4溶菌酶不稳定突变体来分析相组分对酶构象的影响。我们表明,色氨酸的分配不依赖于相系统中尿素的浓度。