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电喷雾电离形成的血管紧张素 II(M + 2H)2+离子中电荷位点的一级和二级位置。

Primary and secondary locations of charge sites in angiotensin II (M + 2H)2+ ions formed by electrospray ionization.

作者信息

Sullards M C, Reiter J A

机构信息

Department of Chemistry, Emory University, Atlanta, Georgia 30322, USA.

出版信息

J Am Soc Mass Spectrom. 2000 Jan;11(1):40-53. doi: 10.1016/S1044-0305(99)00115-4.

Abstract

High-energy tandem mass spectrometry and molecular dynamics calculations are used to determine the locations of charge in metastably decomposing (M + 2H)2+ ions of human angiotensin II. Charge-separation reactions provide critical information regarding charge sites in multiple charged ions. The most probable kinetic energy released (Tm.p.) from these decompositions are obtained using kinetic energy release distributions (KERDs) in conjunction with MS/MS (MS2), MS/MS/MS (MS3), and MS/MS/MS/MS (MS4) experiments. The most abundant singly and doubly charged product ions arise from precursor ion structures in which one proton is located on the arginine (Arg) side chain and the other proton is located on a distal peptide backbone carbonyl oxygen. The MS3 KERD experiments show unequivocally that neither the N-terminal amine nor the aspartic acid (Asp) side chain are sites of protonation. In the gas phase, protonation of the less basic peptide backbone instead of the more proximal and basic histidine (His) side chain is favored as a result of reduced coulomb repulsion between the two charge sites. The singly and doubly charged product ions of lesser abundance arise from precursor ion structures in which one proton is located on the Arg side chain and the other on the His side chain. This is demonstrated in the MS3 and MS4 mass-analyzed ion kinetic energy spectrometry experiments. Interestingly, (b7" + OH)2+ product ions, like the (M + 2H)2+ ions of angiotensin II, are observed to have at least two different decomposing structures in which charge sites have a primary and secondary location.

摘要

采用高能串联质谱和分子动力学计算来确定人血管紧张素II亚稳分解的(M + 2H)2+离子中的电荷位置。电荷分离反应提供了有关多电荷离子中电荷位点的关键信息。通过结合MS/MS(MS2)、MS/MS/MS(MS3)和MS/MS/MS/MS(MS4)实验的动能释放分布(KERD),获得这些分解反应最可能释放的动能(Tm.p.)。最丰富的单电荷和双电荷产物离子来自前体离子结构,其中一个质子位于精氨酸(Arg)侧链上,另一个质子位于远端肽主链羰基氧上。MS3 KERD实验明确表明,N端胺基和天冬氨酸(Asp)侧链都不是质子化位点。在气相中,由于两个电荷位点之间的库仑排斥力降低,碱性较弱的肽主链质子化比近端且碱性较强的组氨酸(His)侧链质子化更受青睐。丰度较低的单电荷和双电荷产物离子来自前体离子结构,其中一个质子位于Arg侧链上,另一个位于His侧链上。这在MS3和MS4质量分析离子动能谱实验中得到了证明。有趣的是,观察到(b7" + OH)2+产物离子与血管紧张素II的(M + 2H)2+离子一样,至少有两种不同的分解结构,其中电荷位点有一个主要位置和一个次要位置。

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