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吲哚和苯并咪唑与醚类形成的气相二元配合物中非共价相互作用的本质与层级结构

Nature and Hierarchy of Noncovalent Interactions in Gas-Phase Binary Complexes of Indole and Benzimidazole with Ethers.

作者信息

Bhattacherjee Aditi, Wategaonkar Sanjay

机构信息

Department of Chemical Sciences, Tata Institute of Fundamental Research , Homi Bhabha Road, Mumbai 400 005, India.

出版信息

J Phys Chem A. 2017 Nov 22;121(46):8815-8824. doi: 10.1021/acs.jpca.7b08627. Epub 2017 Nov 8.

Abstract

Hierarchy among the weak noncovalent interactions such as van der Waals, electrostatic, hydrogen bonding, etc. dictates the secondary and tertiary structures of proteins as well as their interactions with various ligands. In this work, we investigate the competition between conventional (N-H···O) hydrogen bonds, unconventional (C-H···O) hydrogen bonds, and the van der Waals interaction in the model compounds of the chromophores of the amino acids, tryptophan, and histidine. These include indole (IND), benzimidazole (BIM), and its N-methylated analog (N-methylbenzimidazole, MBIM), which present multiple docking sites. The binary complexes of these molecules with ethers (dimethyl ether, diethyl ether, and tetrahydrofuran), which possess high proton affinity but lack acidic protons (thereby only act as hydrogen bond acceptors), are investigated. The complexes are formed in a supersonic jet and jointly studied by electronic and vibrational spectroscopy as well as quantum chemical calculations. Only the N-H···O bound structures are observed for the complexes of IND and BIM with ethers, although computations predict reasonably competent C-H···O type of structures. Remarkably, IND and BIM produce three (N-H···O) conformers with MeO but single conformers with EtO and THF. In the case of MBIM, which lacks a conventional hydrogen bond donor, no evidence for C(2)-H···O hydrogen bonds is seen; instead, the complexes are found to be bound purely by van der Waals interactions. The results indicate that strong N-H···O and even weak van der Waals interactions are thermodynamically favored over C(2)-H···O bound structures in these binary gas-phase complexes.

摘要

诸如范德华力、静电力、氢键等弱非共价相互作用之间的层级关系决定了蛋白质的二级和三级结构以及它们与各种配体的相互作用。在这项工作中,我们研究了传统的(N-H···O)氢键、非常规的(C-H···O)氢键以及氨基酸色氨酸和组氨酸发色团模型化合物中的范德华相互作用之间的竞争。这些化合物包括吲哚(IND)、苯并咪唑(BIM)及其N-甲基化类似物(N-甲基苯并咪唑,MBIM),它们具有多个对接位点。研究了这些分子与醚(二甲醚、二乙醚和四氢呋喃)形成的二元复合物,醚具有高质子亲和力但缺乏酸性质子(因此仅作为氢键受体)。复合物在超声速喷流中形成,并通过电子和振动光谱以及量子化学计算进行联合研究。对于IND和BIM与醚的复合物,仅观察到N-H···O结合结构,尽管计算预测了相当有竞争力的C-H···O类型结构。值得注意的是,IND和BIM与MeO形成三个(N-H···O)构象异构体,而与EtO和THF形成单个构象异构体。在缺乏传统氢键供体的MBIM的情况下,未发现C(2)-H···O氢键的证据;相反,发现复合物纯粹通过范德华相互作用结合。结果表明,在这些二元气相复合物中,强的N-H···O甚至弱的范德华相互作用在热力学上比C(2)-H···O结合结构更有利。

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