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The Use of Ammonium Formate as a Mobile-Phase Modifier for LC-MS/MS Analysis of Tryptic Digests

机译:甲铵用作流动相修饰剂用于胰蛋白酶消化液的LC-MS / MS分析

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摘要

A major challenge facing current mass spectrometry (MS)-based proteomics research is the large concentration range displayed in biological systems, which far exceeds the dynamic range of commonly available mass spectrometers. One approach to overcome this limitation is to improve online reversed-phase liquid chromatography (RP-LC) separation methodologies. LC mobile-phase modifiers are used to improve peak shape and increase sample load tolerance. Trifluoroacetic acid (TFA) is a commonly used mobile-phase modifier, as it produces peptide separations that are far superior to other additives. However, TFA leads to signal suppression when incorporated with electrospray ionization (ESI), and thus, other modifiers, such as formic acid (FA), are used for LC-MS applications. FA exhibits significantly less signal suppression, but is not as effective of a modifier as TFA. An alternative mobile-phase modifier is the combination of FA and ammonium formate (AF), which has been shown to improve peptide separations. The ESI-MS compatibility of this modifier has not been investigated, particularly for proteomic applications. This work compares the separation metrics of mobile phases modified with FA and FA/AF and explores the use of FA/AF for the LC-MS analysis of tryptic digests. Standard tryptic-digest peptides were used for comparative analysis of peak capacity and sample load tolerance. The compatibility of FA/AF in proteomic applications was examined with the analysis of soluble proteins from canine prostate carcinoma tissue. Overall, the use of FA/AF improved online RP-LC separations and led to significant increases in peptide identifications with improved protein sequence coverage.
机译:当前基于质谱(MS)的蛋白质组学研究面临的主要挑战是生物系统中显示的大浓度范围,这远远超出了常用质谱仪的动态范围。克服此限制的一种方法是改进在线反相液相色谱(RP-LC)分离方法。 LC流动相改性剂用于改善峰形并增加样品负载耐受性。三氟乙酸(TFA)是一种常用的流动相改性剂,因为它产生的肽分离效果远远优于其他添加剂。但是,TFA与电喷雾电离(ESI)结合使用时会导致信号抑制,因此,其他改性剂(例如甲酸(FA))可用于LC-MS应用。 FA表现出明显较少的信号抑制,但对修饰剂的效果不如TFA。另一种流动相修饰剂是FA和甲酸铵(AF)的组合,已证明可以改善肽段分离。尚未研究此修饰剂的ESI-MS兼容性,特别是对于蛋白质组学应用。这项工作比较了用FA和FA / AF修饰的流动相的分离指标,并探索了用FA / AF进行胰蛋白酶消化物的LC-MS分析。标准胰蛋白酶消化的肽用于峰容量和样品负载耐受性的比较分析。 FA / AF在蛋白质组学应用中的相容性通过分析来自犬前列腺癌组织的可溶性蛋白进行了检验。总体而言,FA / AF的使用改善了在线RP-LC分离,并通过提高的蛋白质序列覆盖率显着增加了肽段鉴定。

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