Asakawa Daiki, Smargiasso Nicolas, Quinton Loïc, De Pauw Edwin
Chemistry Department and GIGA-R, Mass Spectrometry Laboratory, University of Liege, Liege, Belgium,
J Am Soc Mass Spectrom. 2014 Jun;25(6):1040-8. doi: 10.1007/s13361-014-0868-1. Epub 2014 Apr 4.
Matrix-assisted laser desorption/ionization in-source decay produces highly informative fragments for the sequencing of peptides/proteins. Among amino acids, cysteine and proline residues were found to specifically influence the fragment yield. As they are both frequently found in small peptide structures for which de novo sequencing is mandatory, the understanding of their specific behaviors would allow useful fragmentation rules to be established. In the case of cysteine, a c•/w fragment pair originating from Xxx-Cys is formed by side-chain loss from the cysteine residue. The presence of a proline residue contributes to an increased yield of ISD fragments originating from N-Cα bond cleavage at Xxx1-Xxx2Pro, which is attributable to the cyclic structure of the proline residue. Our results suggest that the aminoketyl radical formed by MALDI-ISD generally induces the homolytic N-Cα bond cleavage located on the C-terminal side of the radical site. In contrast, N-Cα bond cleavage at Xxx-Pro produces no fragments and the N-Cα bond at the Xxx1-Xxx2Pro bond is alternatively cleaved via a heterolytic cleavage pathway.
基质辅助激光解吸/电离源内衰变可为肽/蛋白质测序产生信息丰富的片段。在氨基酸中,发现半胱氨酸和脯氨酸残基会特异性影响片段产率。由于它们都经常出现在必须进行从头测序的小肽结构中,了解它们的特定行为将有助于建立有用的片段化规则。就半胱氨酸而言,源自Xxx-Cys的c•/w片段对是由半胱氨酸残基的侧链丢失形成的。脯氨酸残基的存在会导致源自Xxx1-Xxx2Pro处N-Cα键断裂的源内衰变片段产率增加,这归因于脯氨酸残基的环状结构。我们的结果表明,基质辅助激光解吸/电离源内衰变形成的氨基酮基自由基通常会诱导自由基位点C端侧的均裂N-Cα键断裂。相比之下,Xxx-Pro处的N-Cα键断裂不产生片段,Xxx1-Xxx2Pro键处的N-Cα键则通过异裂途径进行断裂。