Faculty of Chemistry, University of Wrocław, F. Joliot-Curie 14, 50-383 Wrocław, Poland.
Molecules. 2021 Nov 18;26(22):6964. doi: 10.3390/molecules26226964.
Peptide modification by a quaternary ammonium group containing a permanent positive charge is a promising method of increasing the ionization efficiency of the analyzed compounds, making ultra-sensitive detection even at the attomolar level possible. Charge-derivatized peptides may undergo both charge remote (ChR) and charge-directed (ChD) fragmentation. A series of model peptide conjugates derivatized with ,,-triethyloammonium (TEA), 1-azoniabicyclo[2.2.2]octane (ABCO), 2,4,6-triphenylopyridinium (TPP) and tris(2,4,6-trimetoxyphenylo)phosphonium (TMPP) groups were analyzed by their fragmentation pathways both in collision-induced dissociation (CID) and electron-capture dissociation (ECD) mode. The effect of the fixed-charge tag type and peptide sequence on the fragmentation pathways was investigated. We found that the aspartic acid effect plays a crucial role in the CID fragmentation of TPP and TEA peptide conjugates whereas it was not resolved for the peptides derivatized with the phosphonium group. ECD spectra are mostly dominated by c ions. ECD fragmentation of TMPP-modified peptides results in the formation of intense fragments derived from this fixed-charge tag, which may serve as reporter ion.
带正电荷的季铵基团修饰肽是提高分析物电离效率的一种很有前途的方法,使得超灵敏检测甚至在飞摩尔水平成为可能。带电荷的肽可能经历电荷远程(ChR)和电荷导向(ChD)碎裂。一系列用三乙铵(TEA)、1-氮杂双环[2.2.2]辛烷(ABCO)、2,4,6-三苯基吡啶𬭩(TPP)和三(2,4,6-三甲氧基苯基)膦(TMPP)基团衍生的模型肽缀合物通过它们的碎裂途径在碰撞诱导解离(CID)和电子俘获解离(ECD)模式下进行了分析。研究了固定电荷标签类型和肽序列对碎裂途径的影响。我们发现,天冬氨酸效应在 TPP 和 TEA 肽缀合物的 CID 碎裂中起着至关重要的作用,而对于用膦基团衍生的肽则没有解决。ECD 谱主要由 c 离子主导。TMPP 修饰肽的 ECD 碎裂导致形成强烈的源自该固定电荷标签的片段,其可作为报告离子。