Nelson Alshakim, Belitsky Jason M, Vidal Sébastien, Joiner C Steven, Baum Linda G, Stoddart J Fraser
California NanoSystems Institute, Department of Chemistry and Biochemistry, University of California, Los Angeles, California 90095, USA.
J Am Chem Soc. 2004 Sep 29;126(38):11914-22. doi: 10.1021/ja0491073.
A self-assembled pseudopolyrotaxane consisting of lactoside-displaying cyclodextrin (CD) "beads" threaded onto a linear polyviologen "string" was investigated for its ability to inhibit galectin-1-mediated T-cell agglutination. The CDs of the pseudopolyrotaxane are able to spin around the axis of the polymer chain as well as to move back and forth along its backbone to alter the presentation of its ligand. This supramolecular superstructure incorporates all the advantages of polymeric structures, such as the ability to span large distances, along with a distinctively dynamic presentation of its lactoside ligands to afford a neoglycoconjugate that can adjust to the relative stereochemistries of the lectin's binding sites. The pseudopolyrotaxane exhibited a valency-corrected 10-fold enhancement over native lactose in the agglutination assay, which was greater than the enhancements observed for lactoside-bearing trivalent glycoclusters and a lactoside-bearing chitosan polymer tested using the same assay. The experimental results indicate that supramolecular architectures, such as the pseudopolyrotaxane, provide tools for investigating protein-carbohydrate interactions.
研究了一种由展示乳糖苷的环糊精(CD)“珠子”穿在线性聚紫精“线”上组成的自组装假聚轮烷抑制半乳糖凝集素-1介导的T细胞凝集的能力。假聚轮烷的环糊精能够围绕聚合物链的轴旋转,也能沿着其主链来回移动,以改变其配体的呈现方式。这种超分子超结构融合了聚合物结构的所有优点,比如能够跨越较大距离,同时其乳糖苷配体具有独特的动态呈现方式,从而提供一种能适应凝集素结合位点相对立体化学的新糖缀合物。在凝集试验中,假聚轮烷相对于天然乳糖表现出经价态校正后的10倍增强效果,这比使用相同试验测试的带有乳糖苷的三价糖簇和带有乳糖苷的壳聚糖聚合物所观察到的增强效果更大。实验结果表明,诸如假聚轮烷这样的超分子结构为研究蛋白质-碳水化合物相互作用提供了工具。