CIC bioGUNE, Bizkaia Technology Park, Building 800, 48160 Derio, Bizkaia, Spain.
Centre for Synthesis and Chemical Biology, University College Dublin, Belfield, Dublin 4, Ireland.
Molecules. 2019 Jun 25;24(12):2337. doi: 10.3390/molecules24122337.
A fluorine nuclear magnetic resonance (F-NMR)-based method is employed to assess the binding preferences and interaction details of a library of synthetic fluorinated monosaccharides towards dendritic cell-specific intercellular adhesion molecule 3-grabbing non-integrin (DC-SIGN), a lectin of biomedical interest, which is involved in different viral infections, including HIV and Ebola, and is able to recognize a variety of self- and non-self-glycans. The strategy employed allows not only screening of a mixture of compounds, but also obtaining valuable information on the specific sugar-protein interactions. The analysis of the data demonstrates that monosaccharides Fuc, Man, Glc, and Gal are able to bind DC-SIGN, although with decreasing affinity. Moreover, a new binding mode between Man moieties and DC-SIGN, which might have biological implications, is also detected for the first time. The combination of the F with standard proton saturation transfer difference (H-STD-NMR) data, assisted by molecular dynamics (MD) simulations, permits us to successfully define this new binding epitope, where Man coordinates a Ca ion of the lectin carbohydrate recognition domain (CRD) through the axial OH-2 and equatorial OH-3 groups, thus mimicking the Fuc/DC-SIGN binding architecture.
采用基于氟核磁共振(F-NMR)的方法来评估一系列合成氟代单糖与树突状细胞特异性细胞间黏附分子 3 抓取非整合素(DC-SIGN)的结合偏好和相互作用细节,DC-SIGN 是一种具有生物医学意义的凝集素,参与多种病毒感染,包括 HIV 和埃博拉病毒,并且能够识别多种自身和非自身糖。所采用的策略不仅允许筛选化合物的混合物,还可以获得有关特定糖-蛋白相互作用的有价值信息。数据分析表明,单糖 Fuc、Man、Glc 和 Gal 能够与 DC-SIGN 结合,尽管亲和力逐渐降低。此外,还首次检测到 Man 部分与 DC-SIGN 之间的新结合模式,这可能具有生物学意义。F 与标准质子饱和转移差异(H-STD-NMR)数据的结合,通过分子动力学(MD)模拟辅助,使我们能够成功定义这个新的结合表位,其中 Man 通过轴向 OH-2 和赤道 OH-3 基团与凝集素碳水化合物识别域(CRD)的 Ca 离子配位,从而模拟 Fuc/DC-SIGN 结合结构。