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无 TEMPO 自由基引发肽测序质谱中二硫键的断裂。

Disulfide bond cleavage in TEMPO-free radical initiated peptide sequencing mass spectrometry.

机构信息

Department of Chemistry, Sogang University, Seoul 121-742, Korea.

出版信息

J Mass Spectrom. 2011 Aug;46(8):830-9. doi: 10.1002/jms.1955.

Abstract

The gas-phase free radical initiated peptide sequencing (FRIPS) fragmentation behavior of o-TEMPO-Bz-conjugated peptides with an intra- and intermolecular disulfide bond was investigated using MS(n) tandem mass spectrometry experiments. Investigated peptides included four peptides with an intramolecular cyclic disulfide bond, Bactenecin (RLCRIVVIRVCR), TGF-α (CHSGYVGVRC), MCH (DFDMLRCMLGRVFRPCWQY) and Adrenomedullin (16-31) (CRFGTCTVQKLAHQIY), and two peptides with an intermolecular disulfide bond. Collisional activation of the benzyl radical conjugated peptide cation, which was generated through the release of a TEMPO radical from o-TEMPO-Bz-conjugated peptides upon initial collisional activation, produced a large number of peptide backbone fragments in which the S-S or C-S bond was readily cleaved. The observed peptide backbone fragments included a-, c-, x- or z-types, which indicates that the radical-driven peptide fragmentation mechanism plays an important role in TEMPO-FRIPS mass spectrometry. FRIPS application of the linearly linked disulfide peptides further showed that the S-S or C-S bond was selectively and preferentially cleaved, followed by peptide backbone dissociations. In the FRIPS mass spectra, the loss of •SH or •SSH was also abundantly found. On the basis of these findings, FRIPS fragmentation pathways for peptides with a disulfide bond are proposed. For the cleavage of the S-S bond, the abstraction of a hydrogen atom at C(β) by the benzyl radical is proposed to be the initial radical abstraction/transfer reaction. On the other hand, H-abstraction at C(α) is suggested to lead to C-S bond cleavage, which yields [ion ± S] fragments or the loss of •SH or •SSH.

摘要

使用 MS(n) 串联质谱实验研究了具有内分子和间分子二硫键的 o-TEMPO-Bz 缀合肽的气相自由基引发肽测序(FRIPS)碎裂行为。研究的肽包括四个具有内分子环状二硫键的肽,Bactenecin(RLCRIVVIRVCR)、TGF-α(CHSGYVGVRC)、MCH(DFDMLRCMLGRVFRPCWQY)和 Adrenomedullin(16-31)(CRFGTCTVQKLAHQIY),以及两个具有间分子二硫键的肽。通过 o-TEMPO-Bz 缀合肽在初始碰撞激活时释放 TEMPO 自由基,生成的苄基自由基缀合肽阳离子的碰撞激活产生了大量肽骨架片段,其中 S-S 或 C-S 键容易断裂。观察到的肽骨架片段包括 a-、c-、x- 或 z- 型,这表明自由基驱动的肽断裂机制在 TEMPO-FRIPS 质谱中起着重要作用。线性连接的二硫肽的 FRIPS 应用进一步表明,S-S 或 C-S 键被选择性和优先断裂,随后是肽骨架解离。在 FRIPS 质谱中,还大量发现了•SH 或•SSH 的损失。基于这些发现,提出了具有二硫键的肽的 FRIPS 断裂途径。对于 S-S 键的断裂,建议苄基自由基在 C(β)上夺取氢原子作为初始自由基夺取/转移反应。另一方面,建议 C(α)上的 H 夺取导致 C-S 键断裂,生成[离子±S]片段或•SH 或•SSH 的损失。

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