Vuorinen T, Serianni A S
Laboratory of Wood Chemistry, Helsinki University of Technology, Espoo, Finland.
Carbohydr Res. 1990 Oct 25;207(2):185-210. doi: 10.1016/0008-6215(90)84048-y.
D-erythro-Pentos-2-ulose and D-threo-pentos-2-ulose and their 1-13C- and 2-13C-substituted derivatives have been prepared by oxidizing the corresponding natural and 13C-substituted D-aldopentoses (D-arabinose, D-xylose) with cupric acetate, and purifying the products by chromatography on a cation-exchange resin in the calcium or barium form. The equilibrium compositions of the pentos-2-uloses in 2H2O were determined by 13C-n.m.r. spectroscopy (75 MHz) at 25 degrees and 80 degrees. Among the eighteen possible monomeric acyclic, cyclic, and bicyclic forms, the anomeric pairs of the unhydrated aldopyranoses, aldopyranose endocyclic hydrates, aldofuranose endocyclic hydrates, and ketofuranose exocyclic hydrates were identified on the basis of 13C chemical shifts and 13C-1H and 13C-13C spin-coupling constants. 1H-N.m.r. (300, 500, and 620 MHz) and 13C-n.m.r. (75 MHz) spectroscopic data in one and two dimensions (DQF-COSY, homonuclear 2D-J) were used to evaluate the conformational properties of the cyclic structures. The unhydrated pyranoses are highly conformationally homogeneous; the erythro and threo isomers prefer 1C4 and 4C1 conformations, respectively. D-threo-Pentos-2-ulopyranose hydrate prefers the 4C1 conformation whereas the erythro isomers exists in both the 4C1 and 1C4 conformations. The furanoid forms favor structures having quasi-axial anomeric hydroxyl groups and quasi-equatorial exocyclic hydroxymethyl or dihydroxymethyl groups.
通过用醋酸铜氧化相应的天然和13C取代的D-醛戊糖(D-阿拉伯糖、D-木糖),并通过在钙或钡形式的阳离子交换树脂上进行色谱纯化,制备了D-赤藓糖-2-酮戊糖和D-苏阿糖-2-酮戊糖及其1-13C和2-13C取代的衍生物。在25℃和80℃下,通过13C核磁共振光谱(75MHz)测定了戊糖-2-酮糖在2H2O中的平衡组成。在十八种可能的单体无环、环状和双环形式中,根据13C化学位移以及13C-1H和13C-13C自旋耦合常数,确定了未水合醛吡喃糖、醛吡喃糖内环水合物、醛呋喃糖内环水合物和酮呋喃糖外环水合物的异头对。利用一维和二维(DQF-COSY、同核二维J)的1H核磁共振(300、500和620MHz)和13C核磁共振(75MHz)光谱数据来评估环状结构的构象性质。未水合的吡喃糖在构象上高度均一;赤藓糖和苏阿糖异构体分别偏好1C4和4C1构象。D-苏阿糖-2-酮戊糖吡喃糖水合物偏好4C1构象,而赤藓糖异构体则同时存在于4C1和1C4构象中。呋喃糖形式有利于具有准轴向异头羟基和准赤道外环羟甲基或二羟甲基的结构。