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影响单电荷气相肽离子螺旋偏好的因素:多个潜在带电载流部位的影响。

Factors that influence helical preferences for singly charged gas-phase peptide ions: the effects of multiple potential charge-carrying sites.

机构信息

Department of Chemistry, Laboratory for Biological Mass Spectrometry, Texas A & M University, College Station, Texas 77843, USA.

出版信息

J Phys Chem B. 2010 Jan 21;114(2):809-16. doi: 10.1021/jp9105103.

Abstract

Ion mobility-mass spectrometry is used to investigate the structure(s) of a series of model peptide M + H ions to better understand how intrinsic properties affect structure in low dielectric environments. The influence of peptide length, amino acid sequence, and composition on gas-phase structure is examined for a series of model peptides that have been previously studied in solution. Collision cross sections for the M + H ions of Ac-(AAKAA)(n)Y-NH(2) (n = 3-6) and Ac-Y(AEAAKA)(n)F-NH(2) (n = 2-5) are reported and correlated with candidate structures generated using molecular modeling techniques. The M + H ions of the AAKAA peptide series each exhibit a single, dominant ion mobility arrival time distribution (ATD) which correlates to partial helical structures, whereas the M + H ions of the AEAAKA ion series are composed of ATDs which correlate to charge-solvated globules (i.e., the charge is coordinated or solvated by polar peptide functional groups). These data raise numerous questions concerning intrinsic properties (amino acid sequence and composition as well as charge location) that dictate gas-phase peptide ion structure, which may reflect trends for peptide ion structure in low dielectric environments, such as transmembrane segments.

摘要

离子淌度-质谱联用技术用于研究一系列模型肽 M + H离子的结构,以更好地了解内在性质如何在低介电环境中影响结构。对于先前在溶液中研究过的一系列模型肽,考察了肽长度、氨基酸序列和组成对气相结构的影响。报道了 Ac-(AAKAA)(n)Y-NH(2) (n = 3-6)和 Ac-Y(AEAAKA)(n)F-NH(2) (n = 2-5)的 M + H离子的碰撞截面,并与使用分子建模技术生成的候选结构相关联。AAKAA 肽系列的 M + H离子都表现出单一的、主要的离子淌度到达时间分布 (ATD),与部分螺旋结构相关,而 AEAAKA 离子系列的 M + H离子由 ATD 组成,与带电溶剂化球相关(即,电荷由极性肽官能团协调或溶剂化)。这些数据提出了许多关于内在性质(氨基酸序列和组成以及电荷位置)的问题,这些性质决定了气相肽离子结构,这可能反映了低介电环境中肽离子结构的趋势,例如跨膜片段。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a5b/2818683/98f369374515/nihms164340f1.jpg

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