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1-[(1-脱氧-β-D-吡喃果糖-1-基)氮鎓基]环戊烷羧酸盐(“D-果糖-环亮氨酸”)中的多中心氢键

Multicentered hydrogen bonding in 1-[(1-de-oxy-β-d-fructo-pyranos-1-yl)aza-nium-yl]cyclo-pentane-carboxyl-ate ('d-fructose-cyclo-leucine').

作者信息

Mossine Valeri V, Barnes Charles L, Mawhinney Thomas P

机构信息

Department of Biochemistry, University of Missouri, Columbia, MO 65211, USA.

Department of Chemistry, University of Missouri, Columbia, MO 65211, USA.

出版信息

Acta Crystallogr E Crystallogr Commun. 2019 Jul 2;75(Pt 8):1096-1101. doi: 10.1107/S2056989019009253. eCollection 2019 Aug 1.

Abstract

The title compound, CHNO, (), is conformationally unstable; the predominant form present in its solution is the β-pyran-ose form (74.3%), followed by the β- and α-furan-oses (12.1 and 10.2%, respectively), α-pyran-ose (3.4%), and traces of the acyclic carbohydrate tautomer. In the crystalline state, the carbohydrate part of () adopts the β-pyran-ose conformation, and the amino acid portion exists as a zwitterion, with the side chain cyclo-pentane ring assuming the envelope conformation. All heteroatoms are involved in hydrogen bonding that forms a system of anti-parallel infinite chains of fused (6) and (8) rings. The mol-ecule features extensive intra-molecular hydrogen bonding, which is uniquely multicentered and involves the carboxyl-ate, ammonium and carbohydrate hy-droxy groups. In contrast, the contribution of inter-molecular O⋯H/H⋯O contacts to the Hirshfeld surface is relatively low (38.4%), as compared to structures of other d-fructose-amino acids. The H NMR data suggest a slow rotation around the C1-C2 bond in (), indicating that the intra-molecular heteroatom contacts survive in aqueous solution of the mol-ecule as well.

摘要

标题化合物CHNO,(),构象不稳定;其溶液中存在的主要形式是β-吡喃糖形式(74.3%),其次是β-和α-呋喃糖(分别为12.1%和10.2%)、α-吡喃糖(3.4%)以及痕量的无环碳水化合物互变异构体。在晶体状态下,()的碳水化合物部分采用β-吡喃糖构象,氨基酸部分以两性离子形式存在,侧链环戊烷环呈信封式构象。所有杂原子都参与氢键形成,构成了由稠合的(6)和(8)环组成的反平行无限链体系。该分子具有广泛的分子内氢键,其独特之处在于多中心且涉及羧酸盐、铵和碳水化合物羟基。相比之下,与其他d-果糖氨基酸结构相比,分子间O⋯H/H⋯O接触对Hirshfeld表面的贡献相对较低(38.4%)。1H NMR数据表明()中C1-C2键周围的旋转缓慢,这表明分子内杂原子接触在分子的水溶液中也存在。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3761/6690447/e842aac0a6ba/e-75-01096-fig1.jpg

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