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真空条件下甘氨酰(甘氨酰/丙氨酰)色氨酸铜(II)配合物的离解电子转移:IRMPD 动作光谱提供了从两性离子到非两性离子肽结构转变的证据。

Dissociative electron transfer of copper(ii) complexes of glycyl(glycyl/alanyl)tryptophan in vacuo: IRMPD action spectroscopy provides evidence of transition from zwitterionic to non-zwitterionic peptide structures.

机构信息

Department of Chemistry, The University of Hong Kong, Pokfulam, Hong Kong SAR, China.

出版信息

Phys Chem Chem Phys. 2020 Jun 21;22(23):13084-13091. doi: 10.1039/d0cp02296a. Epub 2020 Jun 3.

Abstract

We report herein the first detailed study of the mechanism of redox reactions occurring during the gas-phase dissociative electron transfer of prototypical ternary [Cu(dien)M]˙ complexes (M, peptide). The two final products are (i) the oxidized non-zwitterionic π-centered [M]˙ species with both the charge and spin densities delocalized over the indole ring of the tryptophan residue and with a C-terminal COOH group intact, and (ii) the complementary ion [Cu(dien)]. Infrared multiple photon dissociation (IRMPD) action spectroscopy and low-energy collision-induced dissociation (CID) experiments, in conjunction with density functional theory (DFT) calculations, revealed the structural details of the mass-isolated precursor and product cations. Our experimental and theoretical results indicate that the doubly positively charged precursor [Cu(dien)M]˙ features electrostatic coordination through the anionic carboxylate end of the zwitterionic M moiety. An additional interaction exists between the indole ring of the tryptophan residue and one of the primary amino groups of the dien ligand; the DFT calculations provided the structures of the precursor ion, intermediates, and products, and enabled us to keep track of the locations of the charge and unpaired electron. The dissociative one-electron transfer reaction is initiated by a gradual transition of the M tripeptide from the zwitterionic form in [Cu(dien)M]˙ to the non-zwitterionic M intermediate, through a cascade of conformational changes and proton transfers. In the next step, the highest energy intermediate is formed; here, the copper center is 5-coordinate with coordination from both the carboxylic acid group and the indole ring. A subsequent switch back to 4-coordination to an intermediate IM1, where attachment to GGW occurs through the indole ring only, creates the structure that ultimately undergoes dissociation.

摘要

我们在此报告首例关于气相中典型三元[Cu(dien)M]˙配合物(M,肽)的还原反应发生机制的详细研究。两个最终产物为:(i)氧化的非两性离子π-中心[M]˙物种,其电荷和自旋密度分布于色氨酸残基的吲哚环上,并且 C 端的 COOH 基团完整;(ii)互补离子[Cu(dien)]。红外多光子解离(IRMPD)作用光谱和低能碰撞诱导解离(CID)实验,与密度泛函理论(DFT)计算相结合,揭示了质谱分离的前体和产物阳离子的结构细节。我们的实验和理论结果表明,双正电荷的前体[Cu(dien)M]˙通过两性离子 M 部分的阴离子羧酸盐端通过静电配位。色氨酸残基的吲哚环和 dien 配体的一个仲氨基之间存在另外的相互作用;DFT 计算提供了前体离子、中间体和产物的结构,使我们能够追踪电荷和未配对电子的位置。单电子转移反应是通过 M 三肽从[Cu(dien)M]˙中的两性离子形式逐渐过渡到非两性离子 M 中间体,通过构象变化和质子转移的级联反应而引发的。在下一步中,形成了最高能量的中间体;在这里,铜中心为 5 配位,配位来自羧酸基团和吲哚环。随后通过吲哚环仅与 GGW 发生附着回到中间体 IM1,产生了最终发生解离的结构。

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