Cargile Benjamin J, Talley Dana L, Stephenson James L
Mass Spectrometry Program, Research Triangle Institute, 3040 Conrwallis Road, Research Triangle Park, NC 27709-2194, USA.
Electrophoresis. 2004 Mar;25(6):936-45. doi: 10.1002/elps.200305722.
In this work, we demonstrate the potential use of immobilized pH gradient isoelectric focusing as a first dimension in shotgun proteomics. The high resolving power and resulting reduction in matrix ionization effects due to analyzing peptides with almost the exact same physiochemical properties, represents a significant improvement in performance over traditional strong cation-exchange first-dimensional analysis associated with the shotgun proteomics approach. For example, using this technology, we were able to identify more than 6000 peptides and > 1200 proteins from the cytosolic fraction of Escherichia coli from approximately 10 microg of material analyzed in the second-dimensional liquid chromatography-tandem mass spectrometry experiment. Sample loads on the order of 1 mg can be resolved to 0.25 isoelectric point (pI) units, which make it possible to analyze organisms with significantly larger genomes/proteomes. Accurate pI prediction can then be employed using currently available algorithms to very effectively filter data for peptide/protein identification, and thus lowering the false-positive rate for cross-correlation-based peptide identification algorithms. By simplifying the protein mixture problem to tryptic peptides, the effect of specific amino acids on pI prediction can be evaluated as a function of their position in the peptide chain.
在本研究中,我们展示了固定化pH梯度等电聚焦作为鸟枪法蛋白质组学第一维的潜在用途。由于分析的肽具有几乎完全相同的物理化学性质,其高分辨率以及由此导致的基质电离效应的降低,相较于与鸟枪法蛋白质组学方法相关的传统强阳离子交换第一维分析,在性能上有显著提升。例如,使用该技术,在二维液相色谱 - 串联质谱实验中,从约10微克分析材料的大肠杆菌胞质组分中,我们能够鉴定出6000多种肽和超过1200种蛋白质。毫克级的样品负载可分辨至0.25个等电点(pI)单位,这使得分析具有显著更大基因组/蛋白质组的生物体成为可能。然后可以使用当前可用的算法进行准确的pI预测,以非常有效地过滤用于肽/蛋白质鉴定的数据,从而降低基于互相关的肽鉴定算法的假阳性率。通过将蛋白质混合物问题简化为胰蛋白酶肽,可以根据特定氨基酸在肽链中的位置来评估其对pI预测的影响。