Asakawa Daiki, Takeuchi Takae, Yamashita Asuka, Wada Yoshinao
Department of Molecular Medicine, Osaka Medical Center and Research Institute for Maternal and Child Health, Osaka, Japan,
J Am Soc Mass Spectrom. 2014 Jun;25(6):1029-39. doi: 10.1007/s13361-014-0855-6. Epub 2014 Mar 27.
The use of metal salts in electrospray ionization (ESI) of peptides increases the charge state of peptide ions, facilitating electron transfer dissociation (ETD) in tandem mass spectrometry. In the present study, K(+) and Ca(2+) were used as charge carriers to form multiply-charged metal-peptide complexes. ETD of the potassium- or calcium-peptide complex was initiated by transfer of an electron to a proton remote from the metal cation, and a c'-z• fragment complex, in which the c' and z• fragments were linked together via a metal cation coordinating with several amino acid residues, was formed. The presence of a metal cation in the precursor for ETD increased the lifetime of the c'-z• fragment complex, eventually generating c• and z' fragments through inter-fragment hydrogen migration. The degree of hydrogen migration was dependent on the location of the metal cation in the metal-peptide complex, but was not reconciled with conformation of the precursor ion obtained by molecular mechanics simulation. In contrast, the location of the metal cation in the intermediate suggested by the ETD spectrum was in agreement with the conformation of "proton-removed" precursors, indicating that the charge reduction of precursor ions by ETD induces conformational rearrangement during the fragmentation process.
在肽的电喷雾电离(ESI)中使用金属盐可增加肽离子的电荷态,有助于串联质谱中的电子转移解离(ETD)。在本研究中,K⁺和Ca²⁺用作电荷载体以形成多电荷金属 - 肽复合物。钾 - 肽或钙 - 肽复合物的ETD通过将电子转移到远离金属阳离子的质子上引发,并且形成了c'-z•片段复合物,其中c'和z•片段通过与几个氨基酸残基配位的金属阳离子连接在一起。ETD前体中金属阳离子的存在增加了c'-z•片段复合物的寿命,最终通过片段间的氢迁移产生c•和z'片段。氢迁移的程度取决于金属阳离子在金属 - 肽复合物中的位置,但与通过分子力学模拟获得的前体离子的构象不一致。相反,ETD谱图表明的中间体中金属阳离子的位置与“去质子化”前体的构象一致,这表明ETD导致的前体离子电荷减少在碎片化过程中诱导了构象重排。