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糖聚合物包裹的碳纳米管显示出碳水化合物与凝集素的独特相互作用。

Glycopolymer-Wrapped Carbon Nanotubes Show Distinct Interaction of Carbohydrates With Lectins.

作者信息

DiLillo Ana M, Chan Ka Keung, Sun Xue-Long, Ao Geyou

机构信息

Department of Chemical and Biomedical Engineering, Washkewicz College of Engineering, Cleveland State University, Cleveland, OH, United States.

Department of Chemistry, Center for Gene Regulation in Health and Disease (GRHD), Cleveland State University, Cleveland, OH, United States.

出版信息

Front Chem. 2022 Mar 3;10:852988. doi: 10.3389/fchem.2022.852988. eCollection 2022.

Abstract

Glyconanomaterials with unique nanoscale property and carbohydrate functionality show vast potential in biological and biomedical applications. We investigated the interactions of noncovalent complexes of single-wall carbon nanotubes that are wrapped by disaccharide lactose-containing glycopolymers with the specific carbohydrate-binding proteins. The terminal galactose (Gal) of glycopolymers binds to the specific lectin as expected. Interestingly, an increased aggregation of nanotubes was also observed when interacting with a glucose (Glc) specific lectin, likely due to the removal of Glc groups from the surface of nanotubes resulting from the potential binding of the lectin to the Glc in the glycopolymers. This result indicates that the wrapping conformation of glycopolymers on the surface of nanotubes potentially allows improved accessibility of the Glc for specific lectins. Furthermore, it shows that the interaction between Glc groups in the glycopolymers and nanotubes play a key role in stabilizing the nanocomplexes. Overall, our results demonstrate that nanostructures can enable conformation-dependent interactions of glycopolymers and proteins and can potentially lead to the creation of versatile optical sensors for detecting carbohydrate-protein interactions with enhanced specificity and sensitivity.

摘要

具有独特纳米级特性和碳水化合物功能的糖纳米材料在生物和生物医学应用中显示出巨大潜力。我们研究了由含二糖乳糖的糖聚合物包裹的单壁碳纳米管非共价复合物与特定碳水化合物结合蛋白之间的相互作用。糖聚合物的末端半乳糖(Gal)如预期那样与特定凝集素结合。有趣的是,当与葡萄糖(Glc)特异性凝集素相互作用时,还观察到纳米管聚集增加,这可能是由于凝集素与糖聚合物中的Glc潜在结合导致纳米管表面的Glc基团被去除。该结果表明糖聚合物在纳米管表面的包裹构象可能使Glc对特定凝集素的可及性得到改善。此外,这表明糖聚合物中的Glc基团与纳米管之间的相互作用在稳定纳米复合物中起关键作用。总体而言,我们的结果表明纳米结构能够实现糖聚合物与蛋白质的构象依赖性相互作用,并有可能导致创建用于检测碳水化合物 - 蛋白质相互作用的多功能光学传感器,具有更高的特异性和灵敏度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5398/8927622/96ac47a5f0f8/fchem-10-852988-g001.jpg

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