MPI of Colloids and Interfaces, Potsdam-Golm, Germany.
Biomacromolecules. 2012 Jun 11;13(6):1845-52. doi: 10.1021/bm300331z. Epub 2012 May 11.
We present for the first time the synthesis of sequence-defined monodisperse glycopolymer segments via solid-phase polymer synthesis. Functional building blocks displaying alkyne moieties and hydrophilic ethylenedioxy units were assembled stepwise on solid phase. The resulting polymer segments were conjugated with mannose sugars via 1,3-dipolar cycloaddition. The obtained mono-, di-, and trivalent mannose structures were then subject to Con A lectin binding. Surface plasmon resonance studies showed a nonlinear increase in binding regarding the number and spacing of sugar ligands. The results of Con A lectin binding assays indicate that the chemical composition of the polymeric scaffold strongly contributes to the binding activities as well as the spacing between the ligands and the number of presented mannose units. Our approach now allows for the synthesis of highly defined glycooligomers and glycopolymers with a diversity of properties to investigate systematically multivalent effects of polymeric ligands.
我们首次通过固相聚合合成了序列定义的单分散糖聚合物片段。将带有炔基部分和亲水性乙二氧基单元的功能构建块逐步组装在固相上。所得聚合物片段通过 1,3-偶极环加成与甘露糖糖结合。然后,获得的单、二和三价甘露糖结构与 Con A 凝集素结合。表面等离子体共振研究表明,结合物的数量和糖配体的间距与结合呈非线性增加。Con A 凝集素结合实验的结果表明,聚合物支架的化学组成对结合活性以及配体之间的间距和呈现的甘露糖单位的数量都有很大的影响。我们的方法现在可以合成具有高度定义的糖寡聚物和糖聚合物,具有多种性质,从而可以系统地研究聚合物配体的多价效应。