Laboratoire Interactions, Dynamiques Et Lasers (LIDYL), CEA, CNRS, Université Paris-Saclay, 91191, Gif-sur-Yvette, France.
Institut de Recherche en Astrophysique Et Planétologie (IRAP), Université de Toulouse (UPS), CNRS, CNES, 9 Avenue du Colonel Roche, 31028, Toulouse, France.
Amino Acids. 2021 Apr;53(4):621-633. doi: 10.1007/s00726-021-02967-z. Epub 2021 Mar 20.
S-containing amino acids can lead to two types of local NH···S interactions which bridge backbone NH sites to the side chain to form either intra- or inter-residue H-bonds. The present work reports on the conformational preferences of S-methyl-L-cysteine, Cys(Me), using a variety of investigating tools, ranging from quantum chemistry simulations, gas-phase UV and IR laser spectroscopy, and solution state IR and NMR spectroscopies, on model compounds comprising one or two Cys(Me) residues. We demonstrate that in gas phase and in low polarity solution, the C- and N-capped model compound for one Cys(Me) residue adopts a preferred C5-C6γ conformation which combines an intra-residue N-H···O=C backbone interaction (C5) and an inter-residue N-H···S interaction implicating the side-chain sulfur atom (C6γ). In contrast, the dominant conformation of the C- and N-capped model compound featuring two consecutive Cys(Me) residues is a regular type I β-turn. This structure is incompatible with concomitant C6γ interactions, which are no longer in evidence. Instead, C5γ interactions occur, that are fully consistent with the turn geometry and additionally stabilize the structure. Comparison with the thietane amino acid Attc, which exhibits a rigid cyclic side chain, pinpoints the significance of side chain flexibility for the specific conformational behavior of Cys(Me).
含硫氨基酸可以导致两种类型的局部 NH···S 相互作用,这些相互作用将骨架 NH 位点桥接到侧链,形成内或间残基氢键。本工作使用各种研究工具,包括量子化学模拟、气相 UV 和 IR 激光光谱以及溶液状态 IR 和 NMR 光谱,研究了 S-甲基-L-半胱氨酸(Cys(Me))的构象偏好,该工作涉及包含一个或两个 Cys(Me)残基的模型化合物。我们证明,在气相和低极性溶液中,一个 Cys(Me)残基的 C 和 N 封端模型化合物采用优先的 C5-C6γ构象,该构象结合了一个内残基 N-H···O=C 骨架相互作用(C5)和一个涉及侧链硫原子(C6γ)的间残基 N-H···S 相互作用。相比之下,具有两个连续 Cys(Me)残基的 C 和 N 封端模型化合物的主要构象是规则的 I 型 β-转角。这种结构与同时发生的 C6γ相互作用不兼容,C6γ相互作用不再存在。相反,发生 C5γ相互作用,这与转角几何形状完全一致,并进一步稳定了结构。与具有刚性环状侧链的噻唑烷氨基酸 Attc 的比较,确定了侧链柔性对 Cys(Me)特定构象行为的重要性。