Department of Chemistry, Universitat de les Illes Balears, Ctra. de Valldemossa km 7.5, 07122 Palma, Baleares, Spain.
School of Chemical Sciences, National Institute of Science Education and Research (NISER), Bhubaneswar 752050, India.
Inorg Chem. 2023 Nov 13;62(45):18524-18532. doi: 10.1021/acs.inorgchem.3c02716. Epub 2023 Oct 30.
In this study, the stability, directionality, and physical nature of Spodium bonds (SpBs, an attractive noncovalent force involving elements from group 12 and Lewis bases) between methylmercury (MeHg) and ethylmercury (EtHg) and amino acids (AAs) have been analyzed from both a structural (X-ray analysis) and theoretical (RI-MP2/def2-TZVP level of theory) point of view. More in detail, an inspection of the Protein Data Bank (PDB) reported evidence of noncovalent contacts between MeHg and EtHg molecules and electron-rich atoms (e.g., O atoms belonging to the protein backbone and S atoms from MET residues or the π-systems of aromatic AAs such as TYR or TRP). These results were rationalized through a computational study using MeHg coordinated to a thiolate group as a theoretical model and several neutral and charged electron-rich molecules (e.g., benzene, formamide, or chloride). The physical nature of the interaction was analyzed from electrostatics and orbital perspectives by performing molecular electrostatic potential (MEP) and natural bonding orbital (NBO) analyses. Lastly, the noncovalent interactions plot (NCIplot) technique was used to provide a qualitative view of the strength of the Hg SpBs and compare them to other ancillary interactions present in these systems as well as to shed light on the extension of the interaction in real space. We believe that the results derived from our study will be useful to those scientists devoted to protein engineering and bioinorganic chemistry as well as to expanding the current knowledge of SpBs among the chemical biology community.
本研究从结构(X 射线分析)和理论(RI-MP2/def2-TZVP 理论水平)角度分析了甲基汞(MeHg)和乙基汞(EtHg)与氨基酸(AAs)之间 Spodium 键(SpBs,涉及第 12 族元素和路易斯碱的一种有吸引力的非共价力)的稳定性、方向性和物理性质。更详细地说,对蛋白质数据库(PDB)的检查报告了 MeHg 和 EtHg 分子与富电子原子(例如,属于蛋白质骨架的 O 原子和来自 MET 残基的 S 原子或芳香族 AAs(如 TYR 或 TRP)的π系统)之间存在非共价接触的证据。这些结果通过使用与硫醇基团配位的 MeHg 作为理论模型以及几种中性和带电富电子分子(例如苯、甲酰胺或氯化物)进行计算研究得到了合理化。通过进行分子静电势(MEP)和自然键轨道(NBO)分析,从静电和轨道角度分析了相互作用的物理性质。最后,使用非共价相互作用图(NCIplot)技术提供了 Hg SpBs 强度的定性视图,并将其与这些系统中存在的其他辅助相互作用进行了比较,也阐明了相互作用在实空间中的扩展。我们相信,我们的研究结果将对致力于蛋白质工程和生物无机化学的科学家以及扩大 SpBs 在化学生物学领域的现有知识有用。