Nagao Masanori, Kimoto Yuri, Hoshino Yu, Miura Yoshiko
Department of Chemical Engineering, Kyushu University, 744 Motooka Nishi-ku, Fukuoka 819-0395, Japan.
ACS Omega. 2022 Apr 6;7(15):13254-13259. doi: 10.1021/acsomega.2c00719. eCollection 2022 Apr 19.
Commercialized oligosaccharides such as GM1 are useful for biological applications but generally expensive. Thus, facile access to an effective alternative is desired. Glycopolymers displaying both carbohydrate and hydrophobic units are promising materials as alternatives to oligosaccharides. Prediction of the appropriate polymer structure as an oligosaccharide mimic is difficult, and screening of the many candidates (glycopolymer library) is required. However, repeating polymerization manipulation for each polymer sample to prepare the glycopolymer library is time-consuming. Herein, we report a facile preparation of the glycopolymer library of GM1 mimics by photoinduced electron/energy transfer-reversible addition-fragmentation chain-transfer (PET-RAFT) polymerization. Glycopolymers displaying galactose units were synthesized in various ratios of hydrophobic acrylamide derivatives. The synthesized glycopolymers were immobilized on a gold surface, and the interactions with cholera toxin B subunits (CTB) were analyzed using surface plasmon resonance imaging (SPRI). The screening by SPRI revealed the correlation between the log values of the hydrophobic monomers and the interactions of the glycopolymers with CTB, and the appropriate polymer structure as a GM1 mimic was determined. The combination of the one-time preparation and the fast screening of the glycopolymer library provides a new strategy to access the synthetic materials for critical biomolecular recognition.
商业化的低聚糖(如GM1)在生物学应用中很有用,但通常价格昂贵。因此,人们期望能简便地获得一种有效的替代品。同时展示碳水化合物和疏水单元的糖聚合物作为低聚糖的替代品是很有前景的材料。预测作为低聚糖模拟物的合适聚合物结构很困难,需要对众多候选物(糖聚合物文库)进行筛选。然而,为制备糖聚合物文库对每个聚合物样品进行重复聚合操作很耗时。在此,我们报道了通过光诱导电子/能量转移-可逆加成-断裂链转移(PET-RAFT)聚合简便制备GM1模拟物的糖聚合物文库的方法。以不同比例的疏水丙烯酰胺衍生物合成了展示半乳糖单元的糖聚合物。将合成的糖聚合物固定在金表面,并使用表面等离子体共振成像(SPRI)分析其与霍乱毒素B亚基(CTB)的相互作用。通过SPRI进行的筛选揭示了疏水单体的log 值与糖聚合物与CTB相互作用之间的相关性,并确定了作为GM1模拟物的合适聚合物结构。糖聚合物文库的一次性制备和快速筛选相结合,为获取用于关键生物分子识别的合成材料提供了一种新策略。