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A detachable strong cation exchange monolith integrated with capillary zone electrophoresis and coupled with pH gradient elution produces improved sensitivity and numbers of peptide identifications during bottom-up analysis of complex proteomes

机译:可分离的强阳离子交换整体柱与毛细管区带电泳结合并与pH梯度洗脱结合在复杂蛋白质组的自下而上分析过程中提高了灵敏度和肽鉴定的数量

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摘要

A detachable sulfonate-silica hybrid strong cation-exchange monolith was synthesized in a fused silica capillary, and used for solid phase extraction with on-line pH gradient elution during capillary zone electrophoresis-tandem mass spectrometry (CZE-MS/MS) proteomic analysis. Tryptic digests were prepared in 50 mM formic acid and loaded onto the strong cation-exchange monolith. Fractions were eluted using a series of buffers with lower concentration but higher pH values than the 50 mM formic acid background electrolyte. This combination of elution and background electrolytes results in both sample stacking and formation of a dynamic pH junction, and allows use of relatively large elution buffer volumes while maintaining reasonable peak efficiency and resolution. A series of five pH bumps were applied to elute E. coli tryptic peptides from the monolith, followed by analysis using CZE coupled to an LTQ-Orbitrap Velos mass spectrometer; 799 protein groups and 3,381 peptides were identified from 50 ng of the digest in a 2.5 hour analysis, which approaches the identification rate for this organism that was obtained with an Orbitrap Fusion. We attribute the improved numbers of peptide and protein identifications to the efficient fractionation by the on-line pH gradient elution, which decreased the complexity of the sample in each elution step and improved the signal intensity of low abundance peptides. We also performed a comparative analysis using a nanoACQUITY UltraPerformance LCH system. Similar numbers of protein and peptide identifications were produced by the two methods. Protein identifications showed significant overlap between the two methods, whereas peptide identifications were complementary.
机译:在熔融石英毛细管中合成了可分离的磺酸盐-二氧化硅杂化强阳离子交换整体柱,并在毛细管区带电泳串联质谱(CZE-MS / MS)蛋白质组学分析中用于在线pH梯度洗脱进行固相萃取。在50 mM甲酸中制备胰蛋白酶消化物,并将其装载到强阳离子交换整体柱上。使用一系列浓度比50 mM甲酸背景电解质低但pH值高的缓冲液洗脱级分。洗脱液和背景电解质的这种结合导致样品堆积和动态pH结的形成,并允许使用相对较大的洗脱缓冲液,同时保持合理的峰效率和分离度。应用一系列五个pH缓冲液,从整体中洗脱出大肠杆菌胰蛋白酶肽,然后使用CZE与LTQ-Orbitrap Velos质谱仪联用进行分析。在2.5小时的分析中,从50 ng的消化物中鉴定出799个蛋白质组和3,381个肽,接近通过Orbitrap Fusion获得的该生物体的鉴定率。我们将改进的肽和蛋白质鉴定数量归因于在线pH梯度洗脱的有效分级,从而降低了每个洗脱步骤中样品的复杂性并提高了低丰度肽的信号强度。我们还使用nanoACQUITY UltraPerformance LCH系统进行了比较分析。通过两种方法产生了相似数量的蛋白质和肽鉴定。蛋白质鉴定显示了两种方法之间的显着重叠,而肽鉴定是互补的。

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