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Herpes B virus gD interaction with its human receptor – an in silico analysis approach

机译:乙型肝炎病毒gD与人类受体的相互作用-计算机分析方法

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Background The glycoprotein D (gD) is essential for Herpes B virus (BV) entry into mammalian cells. Nectin-1, an HSV-1 gD receptor, is found to be the receptor which mediated BV induced cell-cell fusion, while HVEM does not mediate fusion by BV glycoprotein. However, the specific sequence and structural requirements of the BV gD for the recognition of and binding to Nectin-1 are unknown. Moreover, the 3D structures of BV gD and the BV gD-receptor complex have not been determined. In this study, we propose a reliable model of the interaction of the BV gD with receptor using bioinformatics tools. Results The three-dimensional structures of two BV gD-receptor complexes were constructed using homology modelling and docking strategy. Based on the models of these complexes, the BV gD receptor interaction patterns were calculated. The results showed that the interface between the BV gD and nectin-1 molecule is not geometrically complementary. The computed molecular interactions indicated that two terminal extensions were the main region of BV gD that binds to nectin-1 and that hydrophobic contacts between the two molecules play key roles in their recognition and binding. The constructed BV gD-HVEM complex model showed that this complex had a lower shape complementarity value and a smaller interface area compared with the HSV-1 gD-HVEM complex, and the number of intermolecular interactions between BV gD-HVEM were fewer than that of HSV-1 gD-HVEM complex. These results could explain why HVEM does not function as a receptor for BV gD. Conclusion In this study, we present structural model for the BV gD in a complex with its receptor. Some features predicted by this model can explain previously reported experimental data. This complex model may lead to a better understanding of the function of BV gD and its interaction with receptor and will improve our understanding of the activation of the BV fusion and entry process.
机译:背景技术糖蛋白D(gD)对于疱疹B病毒(BV)进入哺乳动物细胞至关重要。 Nectin-1是HSV-1 gD受体,被发现是介导BV诱导的细胞-细胞融合的受体,而HVEM不介导BV糖蛋白的融合。但是,BV gD识别和结合Nectin-1的特定序列和结构要求尚不清楚。此外,尚未确定BV gD和BV gD受体复合物的3D结构。在这项研究中,我们提出了使用生物信息学工具的BV gD与受体相互作用的可靠模型。结果采用同源建模和对接策略构建了两种BV gD-受体复合物的三维结构。基于这些复合物的模型,计算了BV gD受体相互作用模式。结果表明,BV gD和nectin-1分子之间的界面在几何上不是互补的。计算的分子相互作用表明,两个末端延伸是结合Nectin-1的BV gD的主要区域,两个分子之间的疏水接触在其识别和结合中起关键作用。所构建的BV gD-HVEM复合物模型表明,与HSV-1 gD-HVEM复合物相比,该复合物具有较低的形状互补值和较小的界面面积,并且BV gD-HVEM之间的分子间相互作用数少于HV-1 gD-HVEM HSV-1 gD-HVEM复合物。这些结果可以解释为什么HVEM不能充当BV gD的受体。结论在这项研究中,我们提出了BV gD及其受体复合物的结构模型。该模型预测的某些功能可以解释以前报告的实验数据。这个复杂的模型可能会导致对BV gD的功能及其与受体相互作用的更好的理解,并将改善我们对BV融合和进入过程的激活的理解。

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