Nanosystem Research Institute, National Institute of Advanced Industrial Science and Technology (AIST), 1-1-1 Umezono, Tsukuba, Ibaraki 305-8568, Japan.
J Am Chem Soc. 2010 Dec 1;132(47):16862-72. doi: 10.1021/ja105051e. Epub 2010 Nov 4.
The selective binding between avian and human influenza A viral hemagglutinins (HA) subtype H3 and Neu5Acα2-3 and α2-6Gal (avian α2-3, human α2-6) is qualitatively rationalized by the fragment molecular orbital (FMO) method. We suggest a general model of analyzing protein-ligand interactions based on the electrostatic, polarization, dispersion, and desolvation components obtained from quantum-mechanical calculations at the MP2/6-31G(d) level with the polarizable continuum model of solvation. The favorable avian H3 (A/duck/Ukraine/1963)-avian α2-3 binding arises from the hydrophilic interaction between Gal-4 OH and side-chain NH(2)CO on Gln226, which is supported by the intermolecular hydrogen-bond network to the 1-COO group on Neu5Ac moiety. A substitution of Gln226Leu in the avian H3 HA1 domain increases the binding affinity to human α2-6 due to the Leu226···human α2-6 dispersion with a small entropic penalty during the complex formation. The remarkable human H3 (A/Aichi/2/1968)-human α2-6 binding is not governed by the Ser228-OH···OH-9 Neu5Ac hydrogen bond. These fragment-based chemical aspects can help design monovalent inhibitors of the influenza viral HA-sialoside binding and the simulation studies on the viral HAs-human α2-6 binding.
通过片段分子轨道(FMO)方法,对禽源和人源流感 A 病毒血凝素(HA)亚型 H3 与 Neu5Acα2-3 和 α2-6Gal(禽源 α2-3,人源 α2-6)的选择性结合进行了定性合理化。我们提出了一种基于静电、极化、色散和去溶剂化成分的分析蛋白质-配体相互作用的一般模型,这些成分是通过在 MP2/6-31G(d)水平上进行量子力学计算,并采用可极化连续体模型的溶剂化得到的。有利的禽源 H3(A/duck/Ukraine/1963)-禽源 α2-3 结合源于 Gal-4 OH 与 Gln226 侧链 NH(2)CO 之间的亲水相互作用,这得到了与 Neu5Ac 部分 1-COO 基团之间的分子间氢键网络的支持。在禽源 H3 HA1 结构域中 Gln226 突变为 Leu 会增加与人类 α2-6 的结合亲和力,这是由于 Leu226···人类 α2-6 色散与复合物形成过程中的小熵罚有关。显著的人源 H3(A/Aichi/2/1968)-人源 α2-6 结合不受 Ser228-OH···OH-9 Neu5Ac 氢键的控制。这些基于片段的化学方面可以帮助设计流感病毒 HA-唾液酸结合的单价抑制剂,并对病毒 HAs-人源 α2-6 结合进行模拟研究。