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通过使用前端双喷雾反应器的液滴相引发离子/离子化学实现高通量生物共轭,以增强193纳米光解离。

High-throughput bioconjugation for enhanced 193 nm photodissociation via droplet phase initiated ion/ion chemistry using a front-end dual spray reactor.

作者信息

Cotham Victoria C, Shaw Jared B, Brodbelt Jennifer S

机构信息

Department of Chemistry, The University of Texas at Austin , 105 East 24th Street, Austin, Texas 78712, United States.

出版信息

Anal Chem. 2015 Sep 15;87(18):9396-402. doi: 10.1021/acs.analchem.5b02242. Epub 2015 Aug 31.

Abstract

Fast online chemical derivatization of peptides with an aromatic label for enhanced 193 nm ultraviolet photodissociation (UVPD) is demonstrated using a dual electrospray reactor implemented on the front-end of a linear ion trap (LIT) mass spectrometer. The reactor facilitates the intersection of protonated peptides with a second population of chromogenic 4-formyl-1,3-benzenedisulfonic acid (FBDSA) anions to promote real-time formation of ion/ion complexes at atmospheric pressure. Subsequent collisional activation of the ion/ion intermediate results in Schiff base formation generated via reaction between a primary amine in the peptide cation and the aldehyde moiety of the FBDSA anion. Utilizing 193 nm UVPD as the subsequent activation step in the MS(3) workflow results in acquisition of greater primary sequence information relative to conventional collision induced dissociation (CID). Furthermore, Schiff-base-modified peptides exhibit on average a 20% increase in UVPD efficiency compared to their unmodified counterparts. Due to the efficiency of covalent labeling achieved with the dual spray reactor, we demonstrate that this strategy can be integrated into a high-throughput LC-MS(n) workflow for rapid derivatization of peptide mixtures.

摘要

利用在线性离子阱(LIT)质谱仪前端实现的双电喷雾反应器,展示了肽与芳香族标签的快速在线化学衍生化,以增强193 nm紫外光解离(UVPD)。该反应器促进质子化肽与第二批生色4-甲酰基-1,3-苯二磺酸(FBDSA)阴离子的交叉,以促进大气压下离子/离子复合物的实时形成。离子/离子中间体的后续碰撞活化导致通过肽阳离子中的伯胺与FBDSA阴离子的醛部分之间的反应生成席夫碱。在MS(3)工作流程中,利用193 nm UVPD作为后续活化步骤,相对于传统的碰撞诱导解离(CID),可获得更多的一级序列信息。此外,席夫碱修饰的肽与未修饰的肽相比,UVPD效率平均提高了20%。由于双喷雾反应器实现了共价标记的效率,我们证明该策略可整合到高通量LC-MS(n)工作流程中,用于肽混合物的快速衍生化。

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