Complex Carbohydrate Research Center, University of Georgia, 315 Riverbend Road, Athens, Georgia 30602, USA.
J Am Chem Soc. 2009 Dec 2;131(47):17394-405. doi: 10.1021/ja907358k.
Although hundreds of heparan sulfate binding proteins have been identified and implicated in a myriad of physiological and pathological processes, very little information is known about the ligand requirements for binding and mediating biological activities by these proteins. This difficulty results from a lack of technology for establishing structure-activity relationships, which in turn is due to the structural complexity of natural heparan sulfate (HS) and difficulties of preparing well-defined HS oligosaccharides. To address this deficiency, we developed a modular approach for the parallel combinatorial synthesis of HS oligosaccharides that utilizes a relatively small number of selectively protected disaccharide building blocks, which can easily be converted into glycosyl donors and acceptors. The utility of the modular building blocks has been demonstrated by the preparation of a library of 12 oligosaccharides, which has been employed to probe the structural features of HS for inhibiting the protease, BACE-1. The complex variations in activity with structural changes support the view that important functional information is embedded in HS sequences. Furthermore, the most active derivative provides an attractive lead compound for the preparation of more potent compounds, which may find use as a therapeutic agent for Alzheimer's disease.
尽管已经鉴定出数百种与肝素结合蛋白,并涉及到许多生理和病理过程,但对于这些蛋白结合和介导生物学活性的配体要求知之甚少。这种困难源于缺乏建立结构-活性关系的技术,而这反过来又是由于天然肝素(HS)的结构复杂性以及制备定义明确的 HS 寡糖的困难。为了解决这一不足,我们开发了一种用于 HS 寡糖平行组合合成的模块化方法,该方法利用了相对较少的选择性保护二糖砌块,这些砌块可以很容易地转化为糖基供体和受体。模块化砌块的实用性已通过制备 12 种寡糖文库得到证明,该文库用于探测 HS 的结构特征,以抑制蛋白酶 BACE-1。结构变化引起的活性复杂变化支持这样一种观点,即重要的功能信息嵌入在 HS 序列中。此外,最活跃的衍生物为制备更有效的化合物提供了一个有吸引力的先导化合物,这些化合物可能作为阿尔茨海默病的治疗剂。