Department of Chemistry, University of Wisconsin, Madison, WI 53706, USA.
J Am Soc Mass Spectrom. 2012 Apr;23(4):718-27. doi: 10.1007/s13361-011-0331-5.
We implemented negative electron-transfer dissociation (NETD) on a hybrid ion trap/Orbitrap mass spectrometer to conduct ion/ion reactions using peptide anions and radical reagent cations. In addition to sequence-informative ladders of a•- and x-type fragment ions, NETD generated intense neutral loss peaks corresponding to the entire or partial side-chain cleavage from amino acids constituting a given peptide. Thus, a critical step towards the characterization of this recently introduced fragmentation technique is a systematic study of synthetic peptides to identify common neutral losses and preferential fragmentation pathways. Examining 46 synthetic peptides with high mass accuracy and high resolution analysis permitted facile determination of the chemical composition of each neutral loss. We identified 19 unique neutral losses from 14 amino acids and three modified amino acids, and assessed the specificity and sensitivity of each neutral loss using a database of 1542 confidently identified peptides generated from NETD shotgun experiments employing high-pH separations and negative electrospray ionization. As residue-specific neutral losses indicate the presence of certain amino acids, we determined that many neutral losses have potential diagnostic utility. We envision this catalogue of neutral losses being incorporated into database search algorithms to improve peptide identification specificity and to further advance characterization of the acidic proteome.
我们在混合离子阱/轨道阱质谱仪上实施了电子转移解离(NETD),以使用肽阴离子和自由基试剂阳离子进行离子/离子反应。除了 a•-和 x-型片段离子的序列信息梯外,NETD 还产生了强烈的中性丢失峰,对应于给定肽中构成的氨基酸的整个或部分侧链断裂。因此,朝着该新引入的碎裂技术的表征迈出的关键一步是对合成肽进行系统研究,以鉴定常见的中性丢失和优先的碎裂途径。用高质量精度和高分辨率分析检查了 46 个合成肽,便于确定每个中性丢失的化学成分。我们从 14 种氨基酸和 3 种修饰氨基酸中鉴定出 19 个独特的中性丢失,并使用来自 NETD shotgun 实验的数据库评估了每个中性丢失的特异性和灵敏度,该数据库采用高 pH 分离和负电喷雾电离生成了 1542 个经过确认的肽。由于残基特异性的中性丢失表明存在某些氨基酸,因此我们确定许多中性丢失具有潜在的诊断用途。我们设想将这个中性丢失目录纳入数据库搜索算法中,以提高肽鉴定的特异性,并进一步推进酸性蛋白质组的表征。