Dinkelaar Jasper, de Jong Ana Rae, van Meer Robert, Somers Mark, Lodder Gerrit, Overkleeft Herman S, Codée Jeroen D C, van der Marel Gijsbert A
Leiden Institute of Chemistry, Leiden University, P.O. Box 9502, 2300 RA Leiden, The Netherlands.
J Org Chem. 2009 Jul 17;74(14):4982-91. doi: 10.1021/jo900662v.
The stereodirecting effect of the glycosyl C-5 substituent has been investigated in a series of d-pyranosyl thioglycoside donors and related to their preferred positions in the intermediate (3)H(4) and (4)H(3) half-chair oxacarbenium ions. Computational studies showed that an axially positioned C-5 carboxylate ester can stabilize the (3)H(4) half-chair oxacarbenium ion conformer by donating electron density from its carbonyl function into the electron-poor oxacarbenium ion functionality. A similar stabilization can be achieved by a C-5 benzyloxymethyl group, but the magnitude of this stabilization is significantly smaller than for the C-5 carboxylate ester. As a result, the preference of the C-5 benzyloxymethyl to occupy an axial position in the half-chair oxacarbenium ions is much reduced compared to the C-5 carboxylate ester. To minimize steric interactions, a C-5 methyl group prefers to adopt an equatorial position and therefore favors the (4)H(3) half-chair oxacarbenium ion. When all pyranosyl substituents occupy their favored position in one of the two intermediate half-chair oxacarbenium ions, highly stereoselective glycosylations can be achieved as revealed by the excellent beta-selectivity of mannuronate esters and alpha-selectivity of 6-deoxygulosides.
在一系列D-吡喃糖基硫代糖苷供体中研究了糖基C-5取代基的立体定向效应,并将其与它们在中间体(3)H(4)和(4)H(3)半椅式氧碳鎓离子中的优选位置相关联。计算研究表明,轴向定位的C-5羧酸酯可通过将其羰基功能的电子密度提供给缺电子的氧碳鎓离子官能团来稳定(3)H(4)半椅式氧碳鎓离子构象异构体。C-5苄氧基甲基可实现类似的稳定作用,但这种稳定作用的程度明显小于C-5羧酸酯。因此,与C-5羧酸酯相比,C-5苄氧基甲基在半椅式氧碳鎓离子中占据轴向位置的倾向大大降低。为了使空间相互作用最小化,C-5甲基更倾向于采取平伏键位置,因此有利于(4)H(3)半椅式氧碳鎓离子。当所有吡喃糖基取代基在两个中间体半椅式氧碳鎓离子之一中占据其优选位置时,如甘露糖醛酸酯的优异β-选择性和6-脱氧葡糖苷的α-选择性所示,可以实现高度立体选择性的糖基化反应。