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与色氨酸侧链模型的阳离子-π相互作用:碱金属阳离子-吲哚配合物的结构和绝对结合能

Cation-pi interactions with a model for the side chain of tryptophan: structures and absolute binding energies of alkali metal cation-indole complexes.

作者信息

Ruan Chunhai, Yang Zhibo, Hallowita Nuwan, Rodgers M T

机构信息

Department of Chemistry, Wayne State University, Detroit, Michigan 48202, USA.

出版信息

J Phys Chem A. 2005 Dec 22;109(50):11539-50. doi: 10.1021/jp053830d.

Abstract

Threshold collision-induced dissociation techniques are employed to determine bond dissociation energies (BDEs) of mono- and bis-complexes of alkali metal cations, Li+, Na+, K+, Rb+, and Cs+, with indole, C8H7N. The primary and lowest energy dissociation pathway in all cases is endothermic loss of an intact indole ligand. Sequential loss of a second indole ligand is observed at elevated energies for the bis-complexes. Density functional theory calculations at the B3LYP/6-31G level of theory are used to determine the structures, vibrational frequencies, and rotational constants of these complexes. Theoretical BDEs are determined from single point energy calculations at the MP2(full)/6-311+G(2d,2p) level using the B3LYP/6-31G* geometries. The agreement between theory and experiment is very good for all complexes except Li+ (C8H7N), where theory underestimates the strength of the binding. The trends in the BDEs of these alkali metal cation-indole complexes are compared with the analogous benzene and naphthalene complexes to examine the influence of the extended pi network and heteroatom on the strength of the cation-pi interaction. The Na+ and K+ binding affinities of benzene, phenol, and indole are also compared to those of the aromatic amino acids, phenylalanine, tyrosine, and tryptophan to elucidate the factors that contribute to the binding in complexes to the aromatic amino acids. The nature of the binding and trends in the BDEs of cation-pi complexes between alkali metal cations and benzene, phenol, and indole are examined to help understand nature's preference for engaging tryptophan over phenylalanine and tyrosine in cation-pi interactions in biological systems.

摘要

采用阈值碰撞诱导解离技术来测定碱金属阳离子Li⁺、Na⁺、K⁺、Rb⁺和Cs⁺与吲哚(C₈H₇N)形成的单配合物和双配合物的键解离能(BDE)。在所有情况下,主要且能量最低的解离途径是完整吲哚配体的吸热损失。对于双配合物,在较高能量下观察到第二个吲哚配体的相继损失。使用密度泛函理论在B3LYP/6 - 31G理论水平上进行计算,以确定这些配合物的结构、振动频率和转动常数。理论BDE通过在MP2(full)/6 - 311 + G(2d,2p)水平上使用B3LYP/6 - 31G*几何结构进行单点能量计算来确定。除了Li⁺(C₈H₇N)外,理论与实验之间的一致性对于所有配合物都非常好,在Li⁺(C₈H₇N)中理论低估了结合强度。将这些碱金属阳离子 - 吲哚配合物的BDE趋势与类似的苯和萘配合物进行比较,以研究扩展π网络和杂原子对阳离子 - π相互作用强度的影响。还比较了苯、苯酚和吲哚与芳香族氨基酸苯丙氨酸、酪氨酸和色氨酸的Na⁺和K⁺结合亲和力,以阐明有助于与芳香族氨基酸形成配合物的结合因素。研究了碱金属阳离子与苯、苯酚和吲哚之间阳离子 - π配合物的结合性质和BDE趋势,以帮助理解在生物系统中阳离子 - π相互作用中,自然界偏好色氨酸而非苯丙氨酸和酪氨酸的原因。

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