Lu Xiao-Ming, Lu Mary Y, Fischman Alan J, Tompkins Ronald G
Surgical Service and Nuclear Medicine Division, Massachusetts General Hospital and Harvard Medical School, Boston, 02114, USA.
J Mass Spectrom. 2005 May;40(5):599-607. doi: 10.1002/jms.826.
Reversible phosphorylation of proteins functions as a biological switching network for activation and inhibition of downstream biological processes. Since phosphorylations of these sites are often transient processes, and hence sub-stoichiometric, systematic characterization of phosphorylation sites is a formidable challenge. In this work, a new approach was developed to pinpoint phosphotyrosine sites on tyrosine-containing peptides. This required (1) the development of a new and highly sensitive nano-electrospray assembly and (2) validation of the concept that the specificity and detection limit for trace levels of phosphotyrosine immonium ion in peptide mixtures from protein digests can be increased by varying the collision energy. With our method, an automatic tandem mass spectrometric analysis of peptides eluted from a C(18) capillary liquid chromatographic column is triggered by a positive confirmation of phosphotyrosine immonium ion in a time-of-flight mass spectrometric survey. The approach was tested by analyzing the phosphorylation of human IRS-1 peptides that interact with the Src-homology 2 domain and mixtures of these peptides with tryptic digests of bovine serum albumin and horse heart myoglobin.
蛋白质的可逆磷酸化作为一种生物开关网络,用于激活和抑制下游生物过程。由于这些位点的磷酸化通常是瞬时过程,因此是亚化学计量的,对磷酸化位点进行系统表征是一项艰巨的挑战。在这项工作中,开发了一种新方法来精确确定含酪氨酸肽段上的磷酸酪氨酸位点。这需要(1)开发一种新型且高度灵敏的纳米电喷雾组件,以及(2)验证通过改变碰撞能量可以提高蛋白质消化物肽混合物中痕量磷酸酪氨酸铵离子的特异性和检测限这一概念。使用我们的方法,在飞行时间质谱调查中对磷酸酪氨酸铵离子进行阳性确认后,触发对从C(18)毛细管液相色谱柱洗脱的肽段进行自动串联质谱分析。通过分析与Src同源2结构域相互作用的人IRS-1肽段的磷酸化以及这些肽段与牛血清白蛋白和马心肌红蛋白胰蛋白酶消化物的混合物来测试该方法。