Beck Alexander, Moeschel Klaus, Deeg Martin, Häring Hans Ulrich, Voelter Wolfgang, Schleicher Erwin D, Lehmann Rainer
Department of Internal Medicine IV, Division of Clinical Chemistry, University Hospital Tuebingen, Germany.
J Am Soc Mass Spectrom. 2003 Apr;14(4):401-5. doi: 10.1016/s1044-0305(03)00122-3.
Recently, we reported a fast on-line alkaline micro-liquid chromatography/electrospray-atmospheric pressure ionization/collision-induced dissociation/mass spectrometric approach for sensitive phosphopeptide screening of a tryptic digested protein and subsequent characterization of the identified phosphopeptide. Based on this study, we now applied an improved method for the identification of phosphorylation sites in insulin receptor substrate 1, an important mediator in insulin signal transduction which was phosphorylated in vitro by protein kinase C-zeta. The approach consists of an on-line alkaline negative-ion micro-liquid chromatography/electrospray-atmospheric pressure ionization/collision-induced dissociation/mass spectrometric hybrid scan experiment using a triple-quadrupole mass spectrometer with fractionation and subsequent off-line nanoES-MS (ion trap) analysis of the phosphopeptide-containing fractions. During the liquid chromatography (LC)/ES-MS experiment, the phosphopeptides of the enzymatic digest mixture of the studied insulin receptor substrate 1 fragment were detected under high skimmer potential (API-CID) using phosphorylation-specific m/z 79 marker ions as well as the intact m/z-values of the peptides which were recorded under low skimmer potential. Subsequently, the targeted fractions were analyzed by off-line nanoES-MS/MS and MS(3). Using this approach, serine 318 was clearly identified as a major in vitro protein kinase C-zeta phosphorylation site in the insulin receptor substrate -1 fragment. Together, our results indicate that the applied strategy is useful for unequivocal and fast analysis of phosphorylation sites in low abundant signaling proteins.
最近,我们报道了一种快速在线碱性微液相色谱/电喷雾-大气压电离/碰撞诱导解离/质谱方法,用于对胰蛋白酶消化的蛋白质进行灵敏的磷酸肽筛选,并对鉴定出的磷酸肽进行后续表征。基于这项研究,我们现在应用一种改进的方法来鉴定胰岛素受体底物1中的磷酸化位点,胰岛素受体底物1是胰岛素信号转导中的一个重要介质,在体外被蛋白激酶C-ζ磷酸化。该方法包括使用具有分馏功能的三重四极杆质谱仪进行在线碱性负离子微液相色谱/电喷雾-大气压电离/碰撞诱导解离/质谱混合扫描实验,以及对含磷酸肽的馏分进行后续离线纳升电喷雾质谱(离子阱)分析。在液相色谱(LC)/电喷雾质谱实验中,在高分离器电位(API-CID)下,使用磷酸化特异性的m/z 79标记离子以及在低分离器电位下记录的肽段完整m/z值,检测所研究的胰岛素受体底物1片段酶解混合物中的磷酸肽。随后,通过离线纳升电喷雾串联质谱和三级质谱对目标馏分进行分析。使用这种方法,丝氨酸318被明确鉴定为胰岛素受体底物-1片段体外蛋白激酶C-ζ的主要磷酸化位点。总之,我们的结果表明,所应用的策略对于明确和快速分析低丰度信号蛋白中的磷酸化位点是有用的。