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柠檬酸盐可提高超高效液相色谱-电喷雾串联质谱法(UPLC-ESI-MS/MS)对磷酸化肽段的分析性能。

Citrate boosts the performance of phosphopeptide analysis by UPLC-ESI-MS/MS.

作者信息

Winter Dominic, Seidler Joerg, Ziv Yael, Shiloh Yosef, Lehmann Wolf D

机构信息

Molecular Structure Analysis, German Cancer Research Center, Im Neuenheimer Feld 280, 69120 Heidelberg, Germany.

出版信息

J Proteome Res. 2009 Jan;8(1):418-24. doi: 10.1021/pr800304n.

Abstract

Incomplete recovery from the LC column is identified as a major cause for poor detection efficiency of phosphopeptides by LC-MS/MS. It is proposed that metal ions adsorbed on the stationary phase interact with the phosphate group of phosphopeptides via an ion-pairing mechanism related to IMAC (IMAC: immobilized metal ion affinity chromatography). This may result in their partial or even complete retention. Addition of phosphate, EDTA or citrate to the phosphopeptide sample was tested to overcome the detrimental phosphopeptide suppression during gradient LC-MS/MS analysis, while the standard solvent composition (water, acetonitrile, formic acid) of the LC system was left unchanged. With the use of UPLC, a citrate additive was found to be highly effective in increasing the phosphopeptide detection sensitivity. Addition of EDTA was found to be comparable with respect to sensitivity enhancement, but led to fast clogging and destruction of the spray needle and analytical columns due to precipitation. In contrast, a citrate additive is compatible with prolonged and stable routine operation. A 50 mM citrate additive was tested successfully for UPLC-MS analysis of a commercial four-component phosphopeptide mixture, a tryptic beta-casein digest, and several digests of the 140 kDa protein SETDB1. In this protein, 27 phosphorylation sites could be identified by UPLC-MS/MS using addition of citrate, including the detection of several phosphopeptides carrying 3-5 pSer/pThr residues, compared to identification of only 10 sites without citrate addition. A 50 mM citrate additive particularly increases the recovery of multiply phosphorylated peptides, thus, extending the scope of phosphopeptide analysis by LC-MS/MS.

摘要

液相色谱(LC)柱的不完全回收被认为是液相色谱-串联质谱(LC-MS/MS)检测磷酸化肽效率低下的主要原因。有人提出,固定相上吸附的金属离子通过与固定化金属离子亲和色谱(IMAC)相关的离子对机制与磷酸化肽的磷酸基团相互作用。这可能导致它们部分甚至完全保留。在梯度LC-MS/MS分析过程中,测试了向磷酸化肽样品中添加磷酸盐、乙二胺四乙酸(EDTA)或柠檬酸盐,以克服有害的磷酸化肽抑制作用,同时液相色谱系统的标准溶剂组成(水、乙腈、甲酸)保持不变。使用超高效液相色谱(UPLC)时,发现添加柠檬酸盐在提高磷酸化肽检测灵敏度方面非常有效。发现添加EDTA在灵敏度增强方面相当,但由于沉淀导致喷雾针和分析柱快速堵塞和损坏。相比之下,添加柠檬酸盐与延长和稳定的常规操作兼容。50 mM柠檬酸盐添加剂已成功用于商业四组分磷酸化肽混合物、胰蛋白酶水解β-酪蛋白以及140 kDa蛋白SETDB1的几种水解产物的UPLC-MS分析。在这种蛋白质中,使用添加柠檬酸盐的方法通过UPLC-MS/MS可以鉴定出27个磷酸化位点,包括检测到几种带有3-5个磷酸丝氨酸/磷酸苏氨酸残基的磷酸化肽,而不添加柠檬酸盐时仅鉴定出10个位点。50 mM柠檬酸盐添加剂特别提高了多重磷酸化肽的回收率,从而扩展了LC-MS/MS分析磷酸化肽的范围。

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