Luo Yun, Gourmala Chafika, Dong Dengxiang, Barbault Florent, Fan Botao, Hu Yongzhou, Zhang Yongmin
ZJU-ENS joint laboratory of Medicinal Chemistry, College of Pharmaceutical Sciences, Zhejiang University, Hangzhou, 310058, China.
Glycoconj J. 2008 May;25(4):335-44. doi: 10.1007/s10719-007-9077-5. Epub 2007 Nov 1.
The Lewis(x)-Lewis(x) interaction has been increasingly studied, using a variety of techniques including nuclear magnetic resonance spectroscopy, mass spectrometry, vesicle adhesion, atomic force microscopy, and surface plasmon resonance spectroscopy. However, the detailed molecular mechanism of these weak, divalent cation dependent interactions remains unclear, and new models are needed to probe the nature of this phenomenon in term of key roles of the different hydroxyl groups on Lewis(x) trisaccharide determinant involved in the Lewis(x)-Lewis(x) interaction. An interesting solution is to synthesize a series of Lewis(x) pentaosyl glycosphingolipid derivatives in which one of the eight hydroxyl groups of Lewis(x) trisaccharide is replaced by a hydrogen atom, and to test the adhesion induced by interaction of these derivatives, in order to gain insight into the functions played by the hydroxyl groups of the Lewis(x) trisaccharide. This article describes the synthesis of 3d-deoxy and 4d-deoxy Lewis(x) pentaosyl glycosphingolipids, to be used for study of the Lewis(x)-Lewis(x) interaction.
人们已经越来越多地使用包括核磁共振光谱、质谱、囊泡粘附、原子力显微镜和表面等离子体共振光谱在内的各种技术来研究Lewis(x)-Lewis(x)相互作用。然而,这些弱的、依赖二价阳离子的相互作用的详细分子机制仍不清楚,需要新的模型来从参与Lewis(x)-Lewis(x)相互作用的Lewis(x)三糖决定簇上不同羟基的关键作用方面探究这一现象的本质。一个有趣的解决方案是合成一系列Lewis(x)五糖基鞘糖脂衍生物,其中Lewis(x)三糖的八个羟基之一被氢原子取代,并测试这些衍生物相互作用诱导的粘附,以便深入了解Lewis(x)三糖羟基所起的作用。本文描述了用于研究Lewis(x)-Lewis(x)相互作用的3d-脱氧和4d-脱氧Lewis(x)五糖基鞘糖脂的合成。