Davis Amanda G, Zakharov Lev N, Pluth Michael D
Department of Chemistry and Biochemistry, Materials Science Institute, Knight Campus for Accelerating Scientific Impact, Institute of Molecular Biology, 1253 University of Oregon. Eugene, Oregon 97403, United States.
Inorg Chem. 2024 Feb 12;63(6):3057-3062. doi: 10.1021/acs.inorgchem.3c03922. Epub 2024 Jan 29.
HS is a physiologically important signaling molecule with complex roles in biology and exists primarily as HS at physiological pH. Despite this anionic character, few investigations have focused on the molecular recognition and reversible binding of this important biological anion. Using a series of imidazole and imidazolium host molecules, we investigate the role of preorganization and charge on HS binding. Using a macrocyclic -imidazolium receptor, we demonstrate the unexpected 2:1 host-guest binding of HS, which was characterized both in solution and by X-ray crystallography. To the best of our knowledge, this is the first example of this binding stoichiometry for HS binding. Moreover, the short C-H···S distances of 2.53, 2.54, 2.76, and 2.79 Å are well within the sum of the van der Waals radii of the interacting atoms, which is consistent with strong C-H···S interactions.
硫酸乙酰肝素(HS)是一种在生物学中具有复杂作用的重要生理信号分子,在生理pH值下主要以HS形式存在。尽管具有这种阴离子特性,但很少有研究聚焦于这种重要生物阴离子的分子识别和可逆结合。我们使用一系列咪唑和咪唑鎓主体分子,研究预组织和电荷对HS结合的作用。通过一个大环咪唑鎓受体,我们证明了HS意外的2:1主客体结合,这在溶液中和通过X射线晶体学都得到了表征。据我们所知,这是HS结合中这种结合化学计量比的首个例子。此外,2.53、2.54、2.76和2.79 Å的短C-H···S距离完全在相互作用原子范德华半径之和范围内,这与强C-H···S相互作用一致。