Université Paris-Saclay, CEA, CNRS, LIDYL, 91191 Gif-sur-Yvette, France.
Molecules. 2022 May 15;27(10):3163. doi: 10.3390/molecules27103163.
The side-chain of methionine residues is long enough to establish NH⋯S H-bonds with neighboring carbonyl groups of the backbone, giving rise to so-called intra-residue 6 and inter-residue 7 H-bonds. The aim of the present article is to document how the substitution of sulfur with a selenium atom affects the H-bonding of the Met system. This was investigated both experimentally and theoretically by conformation-resolved optical spectroscopy, following an isolated molecule approach. The present work emphasizes the similarities of the Met and Sem residues in terms of conformational structures, energetics, NH⋯Se/S H-bond strength and NH stretch spectral shifts, but also reveals subtle behavior differences between them. It provides evidence for the sensitivity of the H-bonding network with the folding type of the Sem/Met side-chains, where a simple flip of the terminal part of the side-chain can induce an extra 50 cm spectral shift of the NH stretch engaged in a 7 NH⋯S/Se bond.
甲硫氨酸残基的侧链足够长,可以与骨架的相邻羰基建立 NH⋯S H 键,形成所谓的内残基 6 和 7 位残基 H 键。本文的目的是记录硫原子被硒原子取代如何影响 Met 系统的氢键。这是通过分离分子方法的构象分辨光学光谱学实验和理论研究来研究的。本工作强调了 Met 和 Sem 残基在构象结构、能量、NH⋯Se/S H 键强度和 NH 伸缩光谱位移方面的相似性,但也揭示了它们之间的细微行为差异。它为 H 键网络的敏感性提供了证据,与 Sem/Met 侧链的折叠类型有关,其中侧链末端部分的简单翻转可以使参与 7 个 NH⋯S/Se 键的 NH 伸缩产生额外的 50cm 光谱位移。