Department of Chemistry, Faculty of Science, Ehime University, Matsuyama, Japan.
Electrophoresis. 2011 Jan;32(2):300-9. doi: 10.1002/elps.201000443. Epub 2010 Dec 14.
In a previous paper, we reported on the analysis of Escherichia coli (strain K-12) soluble proteins by nondenaturing micro 2-DE/3-DE and MALDI-MS-PMF [Manabe, T., Jin, Y., Electrophoresis 2010, 31, 2740-2748]. To evaluate the performance of the 2-DE/3-DE technique, a nondenaturing 2-DE gel just after the second-dimension run was cut into 12 vertical strips, each 2 mm-wide strip was set on a micro slab gel, and third-dimension SDS-PAGE was run in parallel. Each of the twelve 3-DE gels showed about 150-200 CBB-stained spots. Two of the 3-DE gels were selected for the assignment of polypeptides using MALDI-MS-PMF and totally 161 polypeptides were assigned on the two 3-DE gels, in which 81 have been assigned on the nondenaturing micro 2-DE gel and 80 were newly assigned. Most of the newly assigned polypeptides resided in faintly stained spots on the 3-DE gels, which indicates that the polypeptides were purified in the process of the third-dimension separation. The comparisons of the apparent mass values estimated from the second-dimension (nondenaturing pore-gradient PAGE) mobility with those estimated from the third-dimension (SDS-PAGE) mobility suggested the oligomer structures of the assigned polypeptides and they matched well with those described in a database (UniProtKnowledgebase). The technique of nondenaturing micro 2-DE/3-DE, combined with MALDI-MS-PMF, could become an efficient method to obtain information on the quaternary structures of hundreds of cellular soluble proteins simultaneously because of its high efficiency in protein/polypeptide separation and assignment.
在之前的一篇论文中,我们报道了通过非变性微 2-DE/3-DE 和 MALDI-MS-PMF 分析大肠杆菌(K-12 株)可溶性蛋白质[Manabe, T., Jin, Y., Electrophoresis 2010, 31, 2740-2748]。为了评估 2-DE/3-DE 技术的性能,在第二维运行后,将非变性 2-DE 凝胶仅切成 12 个垂直条带,每个 2mm 宽的条带放在微平板凝胶上,同时进行第三维 SDS-PAGE。这十二个 3-DE 凝胶中的每一个都显示了约 150-200 个 CBB 染色斑点。选择其中两个 3-DE 凝胶用于 MALDI-MS-PMF 分配多肽,总共在两个 3-DE 凝胶上分配了 161 个多肽,其中 81 个已经在非变性微 2-DE 凝胶上分配,80 个是新分配的。新分配的多肽大多位于 3-DE 凝胶上的淡染色斑点中,这表明在第三维分离过程中多肽被纯化。从第二维(非变性孔梯度 PAGE)迁移率估计的表观质量值与从第三维(SDS-PAGE)迁移率估计的表观质量值进行比较,表明分配多肽的寡聚结构与数据库(UniProtKnowledgebase)中描述的结构相符。非变性微 2-DE/3-DE 技术与 MALDI-MS-PMF 相结合,可以成为一种同时获得数百种细胞可溶性蛋白质的四级结构信息的有效方法,因为它在蛋白质/多肽分离和分配方面效率很高。