Kerins Louise, Byrne Sylvester, Gabba Adele, Murphy Paul V
School of Chemistry , National University of Ireland Galway , University Road , Galway , Ireland.
J Org Chem. 2018 Aug 3;83(15):7714-7729. doi: 10.1021/acs.joc.8b00610. Epub 2018 Jul 18.
Equilibrium anomeric ratios are reported for pyranoses (hemiacetals) of glucuronic and galacturonic acid and their derivatives. These are compared to related gluco- and galactopyranoses and to deoxyfluorogluco- and deoxyfluorogalactopyranoses. An association between axial anomer stability and the sum of H NMR downfield chemical shifts for protons H-3 and H-5 was observed in DO with gluco- and galactopyranoses as reference compounds. When compared to 2-hydroxytetrahydropyran in water, introduction of three OAc substituents and one carboxylic acid substituent leads to an increase in stability of the axial anomer by 0.89-1.05 kcal/mol. This is interpreted as the electron-withdrawing substituents causing a reduction in the steric (gauche) interaction and an increase in favourable Coulombic interaction between CH groups of the pyranose and the anomeric group through substituent deshielding effects. Anomer preferences for galacturonic acid and its derivatives were more sensitive to solvent polarity compared to other pyranoses, and this may be linked to the electrostatic potential and reduced stabilization of the equatorial anomeric OH group due to reduced hydrogen bonding. The latter is more notable in nonpolar chloroform. Analysis of crystal structures combined with molecular dynamics indicated there are conformational distinctions between galacturonic acid and glucuronic acid that could influence properties.
报道了葡萄糖醛酸和半乳糖醛酸及其衍生物的吡喃糖(半缩醛)的平衡异头物比率。将这些与相关的葡萄糖和半乳糖吡喃糖以及脱氧氟葡萄糖和脱氧氟半乳糖吡喃糖进行了比较。以葡萄糖和半乳糖吡喃糖作为参考化合物,在氘代试剂中观察到轴向异头物稳定性与质子H-3和H-5的氢核磁共振(¹H NMR)低场化学位移之和之间存在关联。与水中的2-羟基四氢吡喃相比,引入三个乙酸酯取代基和一个羧酸取代基会使轴向异头物的稳定性增加0.89 - 1.05千卡/摩尔。这被解释为吸电子取代基通过取代基去屏蔽效应导致吡喃糖的CH基团与异头基团之间的空间(gauche)相互作用减少以及有利的库仑相互作用增加。与其他吡喃糖相比,半乳糖醛酸及其衍生物的异头物偏好对溶剂极性更敏感,这可能与静电势以及由于氢键减少导致的赤道异头羟基稳定性降低有关。后者在非极性氯仿中更为明显。结合分子动力学的晶体结构分析表明,半乳糖醛酸和葡萄糖醛酸之间存在构象差异,这可能会影响其性质。