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利用SwedECD数据库研究电子捕获解离中还原物种的小中性损失的分析效用。

Analytical utility of small neutral losses from reduced species in electron capture dissociation studied using SwedECD database.

作者信息

Fälth Maria, Savitski Mikhail M, Nielsen Michael L, Kjeldsen Frank, Andren Per E, Zubarev Roman A

机构信息

Department of Pharmaceutical Biosciences, Uppsala University, Box 583, SE-75 123 Uppsala, Sweden.

出版信息

Anal Chem. 2008 Nov 1;80(21):8089-94. doi: 10.1021/ac800944u. Epub 2008 Oct 7.

Abstract

Small neutral losses from charge-reduced species [M + nH] (( n-1)+* ) is one of the most abundant fragmentation channels in both electron capture dissociation, ECD, and electron transfer dissociation, ETD. Several groups have previously studied these losses on particular examples. Now, the availability of a large (11 491 entries) SwedECD database ( http://www.bmms.uu.se/CAD/indexECD.html) of high-resolution ECD data sets on doubly charged tryptic peptides has made possible a systematic study involving statistical evaluation of neutral losses from [M + 2H] (+ * ) ions. Several new types of losses are discovered, and 16 specific (>94%) losses are characterized according to their specificity and sensitivity, as well as occurrence for peptides of different lengths. On average, there is more than one specific loss per ECD mass spectrum, and two-thirds of all MS/MS data sets in SwedECD contain at least one specific loss. Therefore, specific neutral losses are analytically useful for improved database searching and de novo sequencing. In particular, N and GG isomeric sequences can be distinguished. The pattern of neutral losses was found to be remarkably dissimilar with the losses from radical z* fragment ions: e.g., there is no direct formation of w ions from the reduced species. This finding emphasizes the difference in fragmentation behaviors of hydrogen-abundant and hydrogen-deficient species.

摘要

电荷减少的物种[M + nH]((n - 1)+)产生的小中性损失是电子捕获解离(ECD)和电子转移解离(ETD)中最丰富的碎裂通道之一。此前已有多个研究小组针对特定实例对这些损失进行了研究。现在,一个包含大量(11491条记录)双电荷胰蛋白酶肽段高分辨率ECD数据集的SwedECD数据库(网址:http://www.bmms.uu.se/CAD/indexECD.html)的出现,使得对[M + 2H](+*)离子的中性损失进行统计评估的系统研究成为可能。发现了几种新型损失,并根据其特异性、灵敏度以及在不同长度肽段中的出现情况,对16种特定(>94%)损失进行了表征。平均而言,每个ECD质谱图中存在不止一种特定损失,并且SwedECD中所有MS/MS数据集的三分之二至少包含一种特定损失。因此,特定中性损失对于改进数据库搜索和从头测序具有分析用途。特别是,可以区分N和GG异构体序列。发现中性损失模式与自由基z碎片离子的损失明显不同:例如,还原物种不会直接形成w离子。这一发现强调了富氢和贫氢物种碎裂行为的差异。

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