Pröfrock Daniel, Leonhard Peter, Ruck Wolfgang, Prange Andreas
GKSS Research Centre Geesthacht, Institute for Coastal Research, Marine Bioanalytical Chemistry, Max Planck Street 1, 21502 Geesthacht, Germany.
Anal Bioanal Chem. 2005 Jan;381(1):194-204. doi: 10.1007/s00216-004-2930-5. Epub 2004 Dec 9.
A comparison of different nebulisers for direct hyphenation of capillary and nano liquid chromatography (Cap-LC, Nano-LC) and quadrupole-based collision cell inductively coupled plasma mass spectrometry (CC-ICP-MS) for phosphorylation profiling of tryptic protein digests is described. Helium was used as cell gas and specially tuned instrumental conditions were used to achieve background minimisation at the mass of phosphorus, because of kinetic energy discrimination of the interfering polyatomic ions. The proposed set-up is based on a modified capillary electrophoresis interface and a home-made 4 mL spray chamber. It enables the use of gradient conditions with a highly concentrated organic mobile phase as often used in protein phosphorylation analysis, without the need to apply membrane desolvation for removal of the organic phase or further background minimisation. No significant signal suppression or other negative effects caused by the organic mobile phase occur, because of the low flow rates used in Cap-LC and the robust plasma conditions of the CC-ICP-MS instrument. A tryptic digest of beta-casein was investigated as model compound to demonstrate the applicability of the proposed set-up for phosphorylation profiling in protein analysis using quadrupole based collision-cell ICP-MS as phosphorus-specific detector. Detection limits for phosphorylated peptides down to the sub picomole level were obtained. As a complementary technique, electrospray ionisation tandem mass spectrometry (ESI-MS-MS) with data base searching was used for further characterisation of the phosphorylated peptides detected.
本文描述了用于毛细管液相色谱和纳米液相色谱(Cap-LC、Nano-LC)直接联用以及基于四极杆的碰撞池电感耦合等离子体质谱(CC-ICP-MS)对胰蛋白酶消化蛋白进行磷酸化分析的不同雾化器的比较。由于干扰多原子离子的动能歧视,使用氦气作为碰撞池气体,并采用特殊调整的仪器条件以实现磷质量处的背景最小化。所提出的装置基于改进的毛细管电泳接口和自制的4 mL喷雾室。它能够使用蛋白质磷酸化分析中常用的高浓度有机流动相的梯度条件,而无需应用膜去溶剂化来去除有机相或进一步降低背景。由于Cap-LC中使用的低流速以及CC-ICP-MS仪器稳健的等离子体条件,不会出现由有机流动相引起的明显信号抑制或其他负面影响。研究了β-酪蛋白的胰蛋白酶消化物作为模型化合物,以证明所提出的装置在使用基于四极杆的碰撞池ICP-MS作为磷特异性检测器的蛋白质分析中用于磷酸化分析的适用性。获得了低至亚皮摩尔水平的磷酸化肽的检测限。作为一种补充技术,使用具有数据库搜索功能的电喷雾电离串联质谱(ESI-MS-MS)对检测到的磷酸化肽进行进一步表征。