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首页> 外文期刊>BMC Genomics >Prediction of avian influenza A binding preference to human receptor using conformational analysis of receptor bound to hemagglutinin
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Prediction of avian influenza A binding preference to human receptor using conformational analysis of receptor bound to hemagglutinin

机译:使用与血凝素结合的受体的构象分析预测禽流感A与人受体的结合偏好

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BackgroundIt is known that the highly pathogenic avian influenza A virus H5N1 binds strongly and with high specificity to the avian-type receptor by its hemagglutinin surface protein. This specificity is normally a barrier to viral transmission from birds to humans. However, strains may emerge with mutated hemagglutinin, potentially changing the receptor binding preference from avian to human-type. This hypothesis has been proven correct, since viral isolates from Vietnam and Thailand have been found which have increased selectivity toward the human cell receptor. The change in binding preference is due to mutation, which can be computationally modelled. The aim of this study is to further explore whether computational simulation could be used as a prediction tool for host type selectivity in emerging variants.ResultsMolecular dynamics simulation was employed to study the interactions between receptor models and hemagglutinin proteins from H5N1 strains A/Duck/Singapore/3/97, mutated A/Duck/Singapore/3/97 (Q222L, G224S, Q222L/G224S), A/Thailand/1(KAN-1)/2004, and mutated A/Thailand/1(KAN-1)/2004 (L129V/A134V). The avian receptor was represented by Siaα(2,3)Gal substructure and human receptor by Siaα(2,6)Gal. The glycoside binding conformation was monitored throughout the simulations since high selectivity toward a particular host occurs when the sialoside bound with the near-optimized conformation.ConclusionThe simulation results showed all hemagglutinin proteins used the same set of amino acid residues to bind with the glycoside; however, some mutations alter linkage preferences. Preference toward human-type receptors is associated with a positive torsion angle, while avian-type receptor preference is associated with a negative torsion angle. According to the conformation analysis of the bound receptors, we could predict the relative selectivity in accordance with in vitro experimental data when disaccharides receptor analogs were used.
机译:背景技术已知高致病性甲型流感病毒H5N1通过其血凝素表面蛋白与禽类受体牢固结合并具有高特异性。这种特异性通常是从禽类向人类传播病毒的障碍。但是,菌株可能会出现血凝素突变,从而可能将受体结合偏好从禽类变为人型。该假设已被证明是正确的,因为已发现来自越南和泰国的病毒分离株对人细胞受体的选择性增加。结合偏好的变化是由于突变引起的,可以通过计算建模。这项研究的目的是进一步探讨计算模拟是否可以用作预测新兴变异中宿主类型选择性的预测工具。 / 3/97,变异的A / Duck / Singapore / 3/97(Q222L,G224S,Q222L / G224S),A / Thailand / 1(KAN-1)/ 2004和变异的A / Thailand / 1(KAN-1) / 2004(L129V / A134V)。禽受体以Siaα(2,3)Gal亚结构为代表,人受体以Siaα(2,6)Gal为代表。在整个模拟过程中都对糖苷结合构象进行了监测,因为当唾液酸与近乎优化的构象结合时,对特定宿主具有高选择性。结论仿真结果表明,所有血凝素蛋白均使用同一组氨基酸残基与糖苷结合。但是,某些突变会改变连锁偏好。对人型受体的偏爱与正向扭转角相关,而对禽类受体的偏爱与负向扭转角相关。根据结合受体的构象分析,当使用二糖受体类似物时,我们可以根据体外实验数据预测相对选择性。

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