Institute of Pharmacy, Martin Luther University Halle-Wittenberg, Wolfgang-Langenbeck-Str. 4, D-06120, Halle, Saale, Germany.
Institute of Biochemistry, Martin Luther University Halle-Wittenberg, Kurt-Mothes-Str. 3, D-06120, Halle, Saale, Germany.
J Am Soc Mass Spectrom. 2017 Jan;28(1):56-68. doi: 10.1007/s13361-016-1426-9. Epub 2016 Jul 14.
We have synthesized a homobifunctional amine-reactive cross-linking reagent, containing a TEMPO (2,2,6,6-tetramethylpiperidine-1-oxy) and a benzyl group (Bz), termed TEMPO-Bz-linker, to derive three-dimensional structural information of proteins. The aim for designing this novel cross-linker was to facilitate the mass spectrometric analysis of cross-linked products by free radical initiated peptide sequencing (FRIPS). In an initial study, we had investigated the fragmentation behavior of TEMPO-Bz-derivatized peptides upon collision activation in (+)-electrospray ionization collision-induced dissociation tandem mass spectrometry (ESI-CID-MS/MS) experiments. In addition to the homolytic NO-C bond cleavage FRIPS pathway delivering the desired odd-electron product ions, an alternative heterolytic NO-C bond cleavage, resulting in even-electron product ions mechanism was found to be relevant. The latter fragmentation route clearly depends on the protonation of the TEMPO-Bz-moiety itself, which motivated us to conduct (-)-ESI-MS, CID-MS/MS, and MS experiments of TEMPO-Bz-cross-linked peptides to further clarify the fragmentation behavior of TEMPO-Bz-peptide molecular ions. We show that the TEMPO-Bz-linker is highly beneficial for conducting FRIPS in negative ionization mode as the desired homolytic cleavage of the NO-C bond is the major fragmentation pathway. Based on characteristic fragments, the isomeric amino acids leucine and isoleucine could be discriminated. Interestingly, we observed pronounced amino acid side chain losses in cross-linked peptides if the cross-linked peptides contain a high number of acidic amino acids. Graphical Abstract ᅟ.
我们合成了一种同双官能胺反应交联试剂,含有 TEMPO(2,2,6,6-四甲基哌啶-1-氧基)和苄基(Bz),称为 TEMPO-Bz-连接物,以获得蛋白质的三维结构信息。设计这种新型交联剂的目的是通过自由基引发的肽测序(FRIPS)促进交联产物的质谱分析。在最初的研究中,我们研究了 TEMPO-Bz 衍生肽在正离子电喷雾碰撞诱导解离串联质谱(ESI-CID-MS/MS)实验中碰撞激活时的碎裂行为。除了提供所需奇数电子产物离子的自由基引发的 NO-C 键断裂 FRIPS 途径外,还发现了一种替代的异裂 NO-C 键断裂,导致偶数电子产物离子机制相关。后一种碎裂途径显然取决于 TEMPO-Bz 部分的质子化,这促使我们进行 TEMPO-Bz 交联肽的(-)ESI-MS、CID-MS/MS 和 MS 实验,以进一步阐明 TEMPO-Bz-肽分子离子的碎裂行为。我们表明,TEMPO-Bz-连接物在负离子模式下进行 FRIPS 非常有益,因为期望的 NO-C 键的均裂断裂是主要的碎裂途径。基于特征片段,可以区分异构氨基酸亮氨酸和异亮氨酸。有趣的是,如果交联肽含有大量酸性氨基酸,我们观察到交联肽中明显的氨基酸侧链丢失。