Frański Rafał, Schroeder Grzegorz, Kamysz Wojciech, Niedzialkowski Pawel, Ossowski Tadeusz
Faculty of Chemistry, Adam Mickiewicz University, Grunwaldzka 6, 60-780 Poznań, Poland.
J Mass Spectrom. 2007 Apr;42(4):459-66. doi: 10.1002/jms.1178.
The complexes between lysine-containing peptides (M) and crown ethers (CEs, 18C6, 15C5, 12C4) have been studied by the electrospray ionization (ESI) mass spectrometry. The maximum number of CEs attached has been found to be the same as that of the alkyl-amino side chains of lysine and as that of the protons attached. Examination of the breakdown plots of the abundances of the ions observed against the cone voltage (CV) has shown that mass spectrometric fragmentation pathways of [M + nH + (CE)n]+n may involve a loss of a neutral CE molecule as well as protonated one. The decrease in the CE cavity (the use of 12C4 or 15C5 instead of 18C6) leads to a dramatic lowering in the stability of the complexes in the gas phase but not in solution. Attachment of a CE to peptides increases their hydrophobicity, and therefore proceeds with lower efficiency in water than in methanol.
通过电喷雾电离(ESI)质谱法研究了含赖氨酸肽(M)与冠醚(CEs,18C6、15C5、12C4)之间的复合物。已发现附着的CEs的最大数量与赖氨酸的烷基氨基侧链数量以及附着的质子数量相同。针对锥电压(CV)观察到的离子丰度的分解图检查表明,[M + nH + (CE)n]+n的质谱碎裂途径可能涉及中性CE分子以及质子化CE分子的损失。CE腔的减小(使用12C4或15C5代替18C6)导致复合物在气相中的稳定性显著降低,但在溶液中不会。CE附着到肽上会增加其疏水性,因此在水中的效率低于在甲醇中的效率。