Departments of Biochemistry & Biophysics, College of Life Sciences, Zhejiang University, Hangzhou, 310012, China.
National Center for Protein Sciences Beijing, State Key Laboratory of Proteomics, Beijing Proteome Research Center, Beijing Institute of Lifeomics, Beijing, 100026, China.
Adv Sci (Weinh). 2024 Jun;11(24):e2308522. doi: 10.1002/advs.202308522. Epub 2024 Apr 6.
Glycans are complex biomolecules that encode rich information and regulate various biological processes, such as fertilization, host-pathogen binding, and immune recognition, through interactions with glycan-binding proteins. A key driving force for glycan-protein recognition is the interaction between the π electron density of aromatic amino acid side chains and polarized C─H groups of the pyranose (termed the CH-π interaction). However, the relatively weak binding affinity between glycans and proteins has hindered the application of glycan detection and imaging. Here, computational modeling and molecular dynamics simulations are employed to design a chemical strategy that enhances the CH-π interaction between glycans and proteins by genetically incorporating electron-rich tryptophan derivatives into a lectin PhoSL, which specifically recognizes core fucosylated N-linked glycans. This significantly enhances the binding affinity of PhoSL with the core fucose ligand and enables sensitive detection and imaging of core fucosylated glycans in vitro and in xenograft tumors in mice. Further, the study showed that this strategy is applicable to improve the binding affinity of GafD lectin for N-acetylglucosamine-containing glycans. The approach thus provides a general and effective way to manipulate glycan-protein recognition for glycoscience applications.
糖是复杂的生物分子,通过与糖结合蛋白的相互作用,编码丰富的信息并调节各种生物过程,如受精、宿主-病原体结合和免疫识别。糖-蛋白识别的一个关键驱动力是芳族氨基酸侧链的π电子密度与吡喃糖(称为 CH-π 相互作用)的极性 C─H 基团之间的相互作用。然而,糖和蛋白质之间相对较弱的结合亲和力阻碍了糖的检测和成像的应用。在这里,计算建模和分子动力学模拟被用来设计一种化学策略,通过将富含电子的色氨酸衍生物基因整合到专门识别核心岩藻糖基化 N-连接糖的凝集素 PhoSL 中,增强糖和蛋白质之间的 CH-π 相互作用。这显著增强了 PhoSL 与核心岩藻糖配体的结合亲和力,并能够在体外和小鼠异种移植肿瘤中灵敏地检测和成像核心岩藻糖基化糖。此外,该研究表明,该策略可用于提高 GafD 凝集素与含 N-乙酰葡萄糖胺的糖的结合亲和力。因此,该方法为糖科学应用中操纵糖-蛋白识别提供了一种通用而有效的方法。