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One-Step Peptide Backbone Dissociations in Negative-Ion Free Radical Initiated Peptide Sequencing Mass Spectrometry

机译:负离子自由基引发肽测序质谱法中的一步肽主链解离

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Peptide dissociation behavior in TEMPO (2,2,6,6-tetramethylpiperidine-1-oxyl)-based FRIPS (free radical initiated peptide sequencing) mass spectrometry was analyzed in both positive- and negative-ion modes for a number of peptides including angiotensin II, kinetensin, glycoprotein IIb fragment (296-306), des-Pro~2-bradykinin, and ubiquitin tryptic fragment (43-48). In the positive mode, the ·Bz-C(O)-peptide radical species was produced exclusively at the initial collisional activation of o-TEMPO-Bz-C(O)-peptides, and two consecutive applications of collisional activation were needed to observe peptide backbone fragments. In contrast, in the negative-ion mode, a single application of collisional activation to o-TEMPO-Bz-C(O)-peptides produced extensive peptide backbone fragmentations as well as ·Bz-C(O)-peptide radical species. This result indicates that the duty cycle in the TEMPO-based FRIPS mass spectrometry can be reduced by one-half in the negative-ion mode. In addition, the fragment ions observed in the negative-ion experiments were mainly of the a-, c-, x-, and z-types, indicating that radical-driven tandem mass spectrometry was mainly responsible for the TEMPO-based FRIPS even with a single application of collisional activation. Furthermore, the survival fraction analysis of o-TEMPO-Bz-C(O)-peptides was made as a function of the applied normalized collision energy (NCE). This helped us to better understand the differences in FRIPS behavior between the positive- and negative-ion modes in terms of dissociation energetics. The duty-cycle improvement made in the present study provides a cornerstone for future research aiming to achieve a single-step FRIPS in the positive-ion mode.
机译:在正离子和负离子模式下分析了包括血管紧张素在内的多种肽在基于TEMPO(2,2,6,6-四甲基哌啶-1-氧基)的FRIPS(自由基引发的肽测序)质谱中的肽解离行为II,肌腱蛋白,糖蛋白IIb片段(296-306),des-Pro-2缓激肽和泛素胰蛋白酶片段(43-48)。在正模式下,·Bz-C(O)-肽自由基基团仅在o-TEMPO-Bz-C(O)-肽的初始碰撞激活时产生,需要连续两次应用碰撞激活才能观察到肽主链片段。相反,在负离子模式下,对o-TEMPO-Bz-C(O)-肽进行碰撞活化的单一应用会产生大量的肽主链断裂以及·Bz-C(O)-肽自由基基团。此结果表明,在负离子模式下,基于TEMPO的FRIPS质谱仪中的占空比可以减少一半。此外,在负离子实验中观察到的碎片离子主要为a,c,x和z型,这表明自由基驱动的串联质谱法主要负责基于TEMPO的FRIPS,即使碰撞激活的单个应用。此外,对o-TEMPO-Bz-C(O)肽的存活分数进行了分析,该分析是所应用归一化碰撞能量(NCE)的函数。这有助于我们更好地理解在离解能学方面正离子模式和负离子模式之间的FRIPS行为差异。本研究中对占空比的改进为将来的研究奠定了基础,这些研究旨在在阳离子模式下实现单步FRIPS。

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