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处于+1、+2 和+3 形式氧化态的铜与环状肽的气相双电荷配合物:形成、结构和电子俘获解离。

Gas-phase doubly charged complexes of cyclic peptides with copper in +1, +2 and +3 formal oxidation states: formation, structures and electron capture dissociation.

机构信息

Institut Parisien de Chimie Moléculaire, CNRS-UMR 7201, Université Pierre et Marie Curie-Paris 6, 4 place Jussieu, Paris, France.

出版信息

J Mass Spectrom. 2012 Feb;47(2):208-20. doi: 10.1002/jms.2956.

Abstract

Copper complexes with a cyclic D-His-β-Ala-L-His-L-Lys and all-L-His-β-Ala-His-Lys peptides were generated by electrospray which were doubly charged ions that had different formal oxidation states of Cu(I), Cu(II) and Cu(III) and different protonation states of the peptide ligands. Electron capture dissociation showed no substantial differences between the D-His and L-His complexes. All complexes underwent peptide cross-ring cleavages upon electron capture. The modes of ring cleavage depended on the formal oxidation state of the Cu ion and peptide protonation. Density functional theory (DFT) calculations, using the B3LYP with an effective core potential at Cu and M06-2X functionals, identified several precursor ion structures in which the Cu ion was threecoordinated to pentacoordinated by the His and Lys side-chain groups and the peptide amide or enolimine groups. The electronic structure of the formally Cu(III) complexes pointed to an effective Cu(I) oxidation state with the other charge residing in the peptide ligand. The relative energies of isomeric complexes of the Cu(c-HAHK + H) and Cu(c-HAHK - H) type with closed electronic shells followed similar orders when treated by the B3LYP and M06-2X functionals. Large differences between relative energies calculated by these methods were obtained for open-shell complexes of the Cu(c-HAHK) type. Charge reduction resulted in lowering the coordination numbers for some Cu complexes that depended on the singlet or triplet spin state being formed. For Cu(c-HAHK - H) complexes, solution H/D exchange involved only the N-H protons, resulting in the exchange of up to seven protons, as established by ultra-high mass resolution measurements. Contrasting the experiments, DFT calculations found the lowest energy structures for the gas-phase ions that were deprotonated at the peptide C(α) positions.

摘要

铜与具有环状 D-His-β-Ala-L-His-L-Lys 和全-L-His-β-Ala-His-Lys 肽的配合物通过电喷雾生成,这些配合物为带有不同形式氧化态 Cu(I)、Cu(II) 和 Cu(III) 和不同肽配体质子化状态的双电荷离子。电子捕获解离显示 D-His 和 L-His 配合物之间没有实质性差异。所有配合物在电子捕获时都经历了肽交叉环裂解。环裂解的模式取决于 Cu 离子的形式氧化态和肽质子化。密度泛函理论 (DFT) 计算使用 B3LYP 与 Cu 的有效核势和 M06-2X 函数,确定了几种前体离子结构,其中 Cu 离子与 His 和 Lys 侧链基团以及肽酰胺或烯醇亚胺基团五配位。形式上为 Cu(III)配合物的电子结构表明 Cu(I)氧化态有效,而另一个电荷位于肽配体中。具有闭合电子壳层的 Cu(c-HAHK + H)Cu(c-HAHK - H) 型等异构体配合物的相对能量遵循 B3LYP 和 M06-2X 函数处理时的相似顺序。对于具有开壳层的 Cu(c-HAHK) 型配合物,通过这些方法计算的相对能量存在较大差异。电荷还原导致一些 Cu 配合物的配位数降低,这取决于形成的单重态或三重态自旋态。对于 Cu(c-HAHK - H) 配合物,溶液 H/D 交换仅涉及 N-H 质子,导致多达七个质子的交换,如超高质量分辨率测量所确定的。与实验形成对比,DFT 计算发现气相离子的最低能量结构是在肽 C(α)位置脱质子化的。

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