Wategaonkar Sanjay, Bhattacherjee Aditi
Department of Chemical Sciences , Tata Institute of Fundamental Research , Homi Bhabha Road , Mumbai 400 005 , India.
J Phys Chem A. 2018 May 3;122(17):4313-4321. doi: 10.1021/acs.jpca.8b01943. Epub 2018 Apr 25.
The N-H···S hydrogen bond, even though classified as an unconventional hydrogen bond, is found to bear important structural implications on protein structure and folding. In this article, we report a gas-phase study of the N-H···S hydrogen bond between the model compounds of histidine (benzimidazole, denoted BIM) and methionine (dimethyl sulfide, diethyl sulfide, and tetrahydrothiophene, denoted MeS, EtS, and THT, respectively). A combination of laser spectroscopic methods such as laser-induced fluorescence (LIF), two-color resonant two-photon ionization (2cR2PI), and fluorescence depletion by infrared spectroscopy (FDIR) is used in conjunction with DFT and ab initio calculations to characterize the nature of this prevalent H-bonding interaction in simple bimolecular complexes. A single conformer was found to exist for the BIM-MeS complex, whereas the BIM-EtS and BIM-THT complexes showed the presence of three and two conformers, respectively. These conformers were characterized on the basis of IR spectroscopic results and electronic structure calculations. Quantum theory of atoms in molecules (QTAIM), natural bond orbital (NBO), and energy decomposition (NEDA) analyses were performed to investigate the nature of the N-H···S H-bond. Comparison of the results with the N-H···O type of interactions in BIM and indole revealed that the strength of the N-H···S H-bond is similar to N-H···O in these binary gas-phase complexes.
N-H···S氢键尽管被归类为非常规氢键,但已发现其对蛋白质结构和折叠具有重要的结构影响。在本文中,我们报道了对组氨酸(苯并咪唑,记为BIM)和蛋氨酸(二甲硫醚、二乙硫醚和四氢噻吩,分别记为MeS、EtS和THT)的模型化合物之间的N-H···S氢键进行的气相研究。结合使用激光诱导荧光(LIF)、双色共振双光子电离(2cR2PI)和红外光谱荧光耗尽(FDIR)等激光光谱方法,并结合密度泛函理论(DFT)和从头算,以表征简单双分子复合物中这种普遍存在的氢键相互作用的性质。发现BIM-MeS复合物存在单一构象异构体,而BIM-EtS和BIM-THT复合物分别显示存在三种和两种构象异构体。这些构象异构体是根据红外光谱结果和电子结构计算来表征的。进行了分子中原子的量子理论(QTAIM)、自然键轨道(NBO)和能量分解(NEDA)分析,以研究N-H···S氢键的性质。将结果与BIM和吲哚中N-H···O类型的相互作用进行比较,发现在这些二元气相复合物中,N-H···S氢键的强度与N-H···O相似。