Department of Chemistry, University of Connecticut, Storrs, Connecticut, USA.
Adv Carbohydr Chem Biochem. 2011;66:121-86. doi: 10.1016/B978-0-12-385518-3.00003-1.
Seven-atom ring sugars, called septanoses, are increasingly the focus of scientific inquiries because of their potential biological activities. This article details the synthesis, conformational analysis, and protein-binding properties of septanose carbohydrates. A distinction is drawn between septanoses that are substituted in the 6-position of the ring and those that are not. When a C-6 substituent is absent, the structure is essentially that of an aldohexose in its septanose, rather than furanose or pyranose, ring form; they may play as-of-yet unexplored roles in glycobiology. Septanoses having a hydroxymethyl group at C-6, on the other hand, are ring-expanded analogues of pyranoses. Syntheses have moved beyond the preparation of seven-membered ring monosaccharides to the development of septanosyl donors. These donors have been used in the synthesis of novel di- and trisaccharides that contain septanoses as well as a variety of glycoconjugates. Low-energy conformations adopted by septanoses have been organized based on ring substitution and stereochemistry. Instances where septanoses have been demonstrated to bind to natural proteins are presented and analyzed. The major conclusion drawn in the chapter is that advances in the synthesis of septanose carbohydrates now enable a detailed investigation of their activity in a number of biological contexts.
七元环糖,称为七糖,由于其潜在的生物活性,越来越成为科学研究的焦点。本文详细介绍了七糖碳水化合物的合成、构象分析和与蛋白质结合的特性。本文区分了在环的 6 位取代的七糖和未取代的七糖。当不存在 C-6 取代基时,该结构实质上是其七糖形式的醛己糖,而不是呋喃糖或吡喃糖;它们可能在糖生物学中发挥尚未探索的作用。另一方面,在 C-6 位具有羟甲基的七糖是吡喃糖的环扩类似物。合成已经超越了制备七元环单糖,发展到制备七糖供体。这些供体已被用于合成含有七糖的新型二糖和三糖以及各种糖缀合物。根据环取代和立体化学,对七糖所采取的低能量构象进行了组织。本文还介绍和分析了已证明与天然蛋白质结合的七糖实例。本章得出的主要结论是,七糖碳水化合物合成的进展现在能够在许多生物背景下对其活性进行详细研究。