Department of Chemistry, University of British Columbia, Vancouver, BC, V6T 1Z1, Canada.
J Am Soc Mass Spectrom. 2011 Oct;22(10):1699-706. doi: 10.1007/s13361-011-0202-0. Epub 2011 Jul 16.
We introduce a new atmospheric pressure-electron capture dissociation (AP-ECD) source in which conventional nanospray emitters are coupled with the source block and photoionization lamp of a PhotoSpray APPI source. We also introduce procedures for data collection and processing, aimed at maximizing the signal-to-background ratio of ECD products. Representative data from Substance P are presented to demonstrate the performance of the technique. Further, we demonstrate the effects of two important experimental variables, source temperature and vacuum-interface declustering potential (DP), on the method. Last, we show that even when a high source temperature is used to maximize efficiency, AP-ECD fragments of a model phosphorylated peptide retain the modification.
我们介绍了一种新的大气压电子捕获解离(AP-ECD)源,其中常规的纳喷雾发射器与 PhotoSpray APPI 源的源块和光电离灯耦合。我们还介绍了旨在最大化 ECD 产物的信噪比的数据收集和处理程序。代表性的来自神经肽 P 的数据证明了该技术的性能。此外,我们还展示了两个重要的实验变量,源温度和真空接口解簇电位(DP)对该方法的影响。最后,我们表明,即使使用高源温度来最大化效率,模型磷酸化肽的 AP-ECD 片段也保留修饰。