Department of Chemistry, Indian Institute of Science Education and Research Pune, Dr. Homi Bhabha Road, Pashan, Pune-411008, India.
Department of Biology, Indian Institute of Science Education and Research Pune, Dr. Homi Bhabha Road, Pashan, Pune-411008, India.
J Phys Chem Lett. 2021 Feb 4;12(4):1228-1235. doi: 10.1021/acs.jpclett.0c03183. Epub 2021 Jan 25.
The S-H···S non-covalent interaction is generally known as an extremely unconventional weak hydrogen-bond in the literature. The present gas-phase spectroscopic investigation shows that the S-H···S hydrogen-bond can be as strong as any conventional hydrogen-bond in terms of the IR red-shift in the stretching frequency of the hydrogen-bond donor group. Herein, the strength of the S-H···S hydrogen-bond has been determined by measuring the red-shift (∼150 cm) of the S-H stretching frequency in a model complex of 2-chlorothiophenol and dimethyl sulfide using isolated gas-phase IR spectroscopy coupled with quantum chemistry calculations. The observation of an unusually large IR red-shift in the S-H···S hydrogen-bond is explained in terms of the presence of a significant amount of charge-transfer interactions in addition to the usual electrostatic interactions. The existence of ∼750 S-H···S interactions between the cysteine and methionine residues in 642 protein structures determined from an extensive Protein Data Bank analysis also indicates that this interaction is important for the structures of proteins.
S-H···S 非共价相互作用在文献中通常被称为一种非常非常规的弱氢键。本气相光谱研究表明,就氢键供体基团伸缩频率的红外红移而言,S-H···S 氢键的强度可以与任何常规氢键一样强。在此,通过使用分离气相红外光谱结合量子化学计算,测量了 2-氯噻酚和二甲基硫醚模型配合物中 S-H 伸缩频率的红移(约 150cm),从而确定了 S-H···S 氢键的强度。除了通常的静电相互作用之外,观察到 S-H···S 氢键中异常大的红外红移,可以用存在大量电荷转移相互作用来解释。从广泛的蛋白质数据库分析中确定的 642 个蛋白质结构中,半胱氨酸和蛋氨酸残基之间存在约 750 个 S-H···S 相互作用,这也表明这种相互作用对蛋白质的结构很重要。