Department of Chemistry, University of Milano, Via Golgi 19, 20133 Milano, Italy.
Molecular Immunology Unit, San Raffaele Research Institute, via Olgettina 58, 20132 Milano, Italy.
Int J Mol Sci. 2018 Apr 24;19(5):1267. doi: 10.3390/ijms19051267.
The development of small-molecule inhibitors of influenza virus Hemagglutinin could be relevant to the opposition of the diffusion of new pandemic viruses. In this work, we made use of Nuclear Magnetic Resonance (NMR) spectroscopy to study the interaction between two derivatives of sialic acid, Neu5Ac-α-(2,6)-Gal-β-(1⁻4)-GlcNAc and Neu5Ac-α-(2,3)-Gal-β-(1⁻4)-GlcNAc, and hemagglutinin directly expressed on the surface of recombinant human cells. We analyzed the interaction of these trisaccharides with 293T cells transfected with the H5 and H1 variants of hemagglutinin, which thus retain their native trimeric conformation in such a realistic environment. By exploiting the magnetization transfer between the protein and the ligand, we obtained evidence of the binding event, and identified the epitope. We analyzed the conformational features of the glycans with an approach combining NMR spectroscopy and data-driven molecular dynamics simulations, thus obtaining useful information for an efficient drug design.
小分子流感病毒血凝素抑制剂的开发可能与阻止新的大流行病毒扩散有关。在这项工作中,我们利用核磁共振(NMR)光谱法研究了唾液酸的两种衍生物 Neu5Ac-α-(2,6)-Gal-β-(1⁻4)-GlcNAc 和 Neu5Ac-α-(2,3)-Gal-β-(1⁻4)-GlcNAc 与重组人细胞表面直接表达的血凝素之间的相互作用。我们分析了这些三糖与转染了血凝素 H5 和 H1 变体的 293T 细胞的相互作用,在这种真实环境中,这些变体保留了其天然的三聚体构象。通过利用蛋白质和配体之间的磁化转移,我们获得了结合事件的证据,并确定了表位。我们通过结合 NMR 光谱和数据驱动的分子动力学模拟的方法分析了聚糖的构象特征,从而为有效的药物设计提供了有用的信息。