Protein Chemistry Technology Center, Department of Internal Medicine, University of Texas, Southwestern Medical Center, Dallas, TX, USA.
J Am Soc Mass Spectrom. 2011 Apr;22(4):752-61. doi: 10.1007/s13361-011-0084-1. Epub 2011 Feb 24.
Recent studies have suggested that adenosine 5'-monophosphate (AMP) post-translational modification of proteins could represent a novel molecular signaling pathway. Mass spectrometric fragmentation characteristics of this modification have not previously been described and studied systematically. In this work, we therefore examined the fragmentation pattern of chemically synthesized peptides containing AMPylated Thr, Ser, and Tyr. The formation of characteristic ions and the influence of collision energy (CE) on the detection of characteristic ions and their relative peak intensity are reported. When peptide with AMPylated Ser/Thr underwent collision induced dissociation (CID), peaks at m/z 348.1, 136.1, and 250.1, fragments with AMP group attached, and fragments consistent with neutral loss of 347 Da were major characteristic ions; fragments consistent with neutral loss of 135 Da or 249 Da were weaker and not always detectable. The observations for Tyr AMPylation followed the same general patterns as those for Ser/Thr modification, with the exception that the ions detected for Tyr AMPylation did not include either the peak at m/z 348.1, or fragments with a mass shift of -347 Da. The results described in this paper highlight a series of diagnostic ions, which can be used not only to confidently identify the AMPylation site based on MS and MS/MS data, but also to selectively scan AMPylated peptides in complex protein mixtures.
最近的研究表明,腺苷 5'-单磷酸(AMP)的蛋白质翻译后修饰可能代表一种新的分子信号通路。这种修饰的质谱碎裂特征以前没有被描述和系统地研究过。在这项工作中,我们因此检查了含有 AMP 化 Thr、Ser 和 Tyr 的化学合成肽的碎裂模式。报告了特征离子的形成以及碰撞能(CE)对特征离子及其相对峰强度检测的影响。当含有 AMP 化 Ser/Thr 的肽经历碰撞诱导解离(CID)时,m/z 348.1、136.1 和 250.1 的峰、带有 AMP 基团的片段以及与 347 Da 中性丢失一致的片段是主要的特征离子;与 135 Da 或 249 Da 中性丢失一致的片段较弱,并非总是可检测到。Tyr AMPylation 的观察结果与 Ser/Thr 修饰的观察结果大致相同,只是检测到的 Tyr AMPylation 离子不包括 m/z 348.1 处的峰或质量偏移-347 Da 的片段。本文所述的结果突出了一系列诊断离子,这些离子不仅可用于根据 MS 和 MS/MS 数据可靠地识别 AMP 化位点,还可用于在复杂蛋白质混合物中选择性地扫描 AMP 化肽。