Cantekin Seda, Baran Arif, Calişkan Raşit, Balci Metin
Department of Chemistry, Middle East Technical University, Ankara, Turkey.
Carbohydr Res. 2009 Mar 10;344(4):426-31. doi: 10.1016/j.carres.2008.12.005. Epub 2008 Dec 13.
For the synthesis of bromo-conduritol-B skeleton, bromo-1,4-benzoquinone was subjected to bromination followed by the reduction of the carbonyl groups with NaBH(4). Substitution of bromides bonded to sp(3)-hybridized carbon atoms with AgOAc gave the bromo-conduritol-B tetraacetate in high yield. For the construction of bromo-conduritol-C skeleton, 2,2-dimethyl-3a,7a-dihydro-1,3-benzodioxole was used as the starting material. Photooxygenation of the diene unit gave an unsaturated bicyclic endoperoxide. Bromine was incorporated into the molecule by the addition of bromine to the double bond. Opening of the peroxide linkage followed by HBr elimination and reduction of the carbonyl group provided the conduritol-C structure in good yield. Bromo-conduritol-B exhibited strong enzyme-specific inhibition against alpha-glycosidase.
为了合成溴代-金刚糖醇-B骨架,对溴-1,4-苯醌先进行溴化反应,然后用硼氢化钠(NaBH₄)还原羰基。用醋酸银取代与sp(3)杂化碳原子相连的溴原子,高产率地得到了溴代-金刚糖醇-B四乙酸酯。为了构建溴代-金刚糖醇-C骨架,使用2,2-二甲基-3a,7a-二氢-1,3-苯并二恶唑作为起始原料。二烯单元的光氧化反应生成了一个不饱和双环内过氧化物。通过向双键加成溴将溴引入分子中。过氧化物键打开,随后消除溴化氢并还原羰基,以良好的产率得到了金刚糖醇-C结构。溴代-金刚糖醇-B对α-糖苷酶表现出强烈的酶特异性抑制作用。