Polizzotti Brian D, Kiick Kristi L
Department of Materials Science and Engineering and Delaware Biotechnology Institute, University of Delaware, 201 DuPont Hall, Newark, 19716, USA.
Biomacromolecules. 2006 Feb;7(2):483-90. doi: 10.1021/bm050672n.
A variety of important biological events are mediated by the multivalent interaction between relevant oligosaccharides and multiple saccharide receptors on lectins, toxins, and cell surfaces; a variety of glycopolymeric materials have therefore been investigated in studies aimed at manipulating these events. The synthesis of protein- and polypeptide-based glycopolymers via protein engineering and other methods offers opportunities to control both the number and the spacing of saccharides on a scaffold, as well as the conformation of the polymer backbone, and will therefore facilitate the structure-based design of polymers for inhibition of multivalent binding events. In initial studies, we have synthesized a family of galactose-functionalized glycopolymers with a poly(L-glutamic acid) backbone, in which the density and linker length of the pendant carbohydrate moiety were varied. The composition of the glycopolymers was determined via (1)H NMR spectroscopy, and the impact of saccharide density and linker length, as well as the potential for these polypeptide-based glycopolymers to act as high-affinity inhibitors of the cholera toxin, has been indicated via competitive enzyme-linked immunosorbent assay and fluorescence titration experiments. The results of these studies suggest strategies for optimizing the binding of linear glycopolymers to bacterial toxins and will aid in the design of additional protein-based materials for studying the impact of multivalency, spacing, and backbone rigidity in a variety of biologically relevant binding events.
多种重要的生物学事件是由相关寡糖与凝集素、毒素及细胞表面的多种糖类受体之间的多价相互作用介导的;因此,在旨在操控这些事件的研究中,人们对多种糖聚合物材料进行了研究。通过蛋白质工程及其他方法合成基于蛋白质和多肽的糖聚合物,为控制支架上糖类的数量和间距以及聚合物主链的构象提供了机会,因此将有助于基于结构设计聚合物以抑制多价结合事件。在初步研究中,我们合成了一系列以聚(L-谷氨酸)为主链的半乳糖功能化糖聚合物,其中侧链碳水化合物部分的密度和连接子长度有所不同。通过核磁共振氢谱确定了糖聚合物的组成,并通过竞争性酶联免疫吸附测定和荧光滴定实验表明了糖类密度和连接子长度的影响,以及这些基于多肽的糖聚合物作为霍乱毒素高亲和力抑制剂的潜力。这些研究结果为优化线性糖聚合物与细菌毒素的结合提供了策略,并将有助于设计更多基于蛋白质的材料,以研究多价性、间距和主链刚性在各种生物学相关结合事件中的影响。