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氘代肽的电子转移解离过程中氨的损失可作为气相氢 scrambling 的固有量度。

Loss of ammonia during electron-transfer dissociation of deuterated peptides as an inherent gauge of gas-phase hydrogen scrambling.

机构信息

Department of Biochemistry and Molecular Biology, University of Southern Denmark, Campusvej 55, DK-5230 Odense M, Denmark.

出版信息

Anal Chem. 2010 Dec 1;82(23):9755-62. doi: 10.1021/ac101889b. Epub 2010 Oct 29.

Abstract

The application of electron-transfer dissociation (ETD) to obtain single-residue resolution in hydrogen exchange-mass spectrometry (HX-MS) experiments has recently been demonstrated. For such measurements, it is critical to ensure that the level of gas-phase hydrogen scrambling is negligible. Here we utilize the abundant loss of ammonia upon ETD of peptide ions as a universal reporter of positional randomization of the exchangeable hydrogens (hydrogen scrambling) during HX-ETD experiments. We show that the loss of ammonia from peptide ions proceeds without depletion of deuterium when employing optimized mild electrospray ion source settings for the HX-ETD analysis of a selectively labeled model peptide and peptides derived from fully labeled β(2)-microglobulin. Hydrogen scrambling, as induced by excessive vibrational excitation of peptide ions during harsh declustering conditions, is easily detected by a depletion of deuterium when deuterated ammonia is lost from peptides during ETD. This straightforward method requires no modifications to the experimental workflow and has the great advantage that the occurrence of hydrogen scrambling can be directly detected in the actual peptides analyzed in the HX-ETD experiment.

摘要

电子转移解离(ETD)在氢交换-质谱(HX-MS)实验中获得单残基分辨率的应用最近已经得到了证明。对于这样的测量,确保气相氢重排的水平可以忽略不计是至关重要的。在这里,我们利用肽离子的 ETD 时氨的丰富损失作为在 HX-ETD 实验过程中可交换氢(氢重排)的位置随机化的通用报告器。我们表明,当采用优化的温和电喷雾离子源设置用于选择性标记模型肽和完全标记的β(2)-微球蛋白衍生肽的 HX-ETD 分析时,肽离子在苛刻的解簇条件下过度振动激发时氨的损失不会耗尽氘。当肽离子在 ETD 过程中失去氘化氨时,由于氢重排而导致的氘耗尽很容易被检测到,这是一种简单的方法,不需要对实验工作流程进行修改,并且具有很大的优势,即可以直接在 HX-ETD 实验中分析的实际肽中检测到氢重排的发生。

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