Graduate Institute of Medicine, College of Medicine, Kaohsiung Medical University, Kaohsiung, Taiwan.
Department of Urology, Buddhist Da Lin Tzu Chi General Hospital, Chiayi, Taiwan.
Proteome Sci. 2011 Apr 8;9:17. doi: 10.1186/1477-5956-9-17.
Low-abundance proteins are difficultly observed on the two-dimensional gel electrophoresis (2-DE) maps of urine proteome, because they are usually obscured by high-abundance proteins such as albumin and immunoglobulin. In this study, a novel fractionation method was developed for enriching low-abundance proteins by removing high-abundance proteins and progressive elution with salts of various concentrations.
Stepwise weak anion exchange (WAX) chromatography, which applied DEAE-Sephacel resin with non-fixed volume elution, was used to fractionate urine proteome prior to performing 2-DE. Urine proteome was separated into four fractions by progressively eluting the column with 0 M, 50 mM, 100 mM, and 1 M NaCl solutions. Most of the heavy and light immunoglobulin chains appeared in the eluent. After the high-abundance proteins were removed, various low-abundance proteins were enriched and could be easily identified. The potential of this method for obtaining diversified fractionations was demonstrated by eluting the column separately with Na2SO4 and MgCl2 solutions. The 2-DE maps of the fractions eluted with these different salt solutions of identical ionic strength revealed markedly different stain patterns.
The present study demonstrated that this fractionation method could be applied for purposes of enriching low-abundance proteins and obtaining diversified fractionations of urine, and potentially other proteomes.
低丰度蛋白质在尿液蛋白质组的二维凝胶电泳(2-DE)图谱中难以观察到,因为它们通常被白蛋白和免疫球蛋白等高丰度蛋白质所掩盖。在本研究中,开发了一种新的分级方法,通过去除高丰度蛋白质并用不同浓度盐进行渐进洗脱来富集低丰度蛋白质。
采用非固定体积洗脱的 DEAE-Sephacel 树脂进行逐步弱阴离子交换(WAX)层析,在进行 2-DE 之前对尿液蛋白质组进行分级。通过用 0 M、50 mM、100 mM 和 1 M NaCl 溶液逐步洗脱柱,将尿液蛋白质组分离成四个馏分。大部分重和轻免疫球蛋白链出现在洗脱液中。去除高丰度蛋白质后,各种低丰度蛋白质得到富集,易于识别。通过用 Na2SO4 和 MgCl2 溶液分别洗脱柱,证明了这种方法获得多样化分级的潜力。用这些不同盐溶液洗脱柱得到的馏分的 2-DE 图谱显示出明显不同的染色模式。
本研究表明,该分级方法可用于富集低丰度蛋白质并获得尿液和潜在其他蛋白质组的多样化分级。