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Computational analysis of the receptor binding specificity of novel influenza A/H7N9 viruses

机译:新型流感A / H7N9病毒的受体结合特异性的计算分析

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Background: Influenza viruses are undergoing continuous and rapid evolution. The fatal influenza A/H7N9 has drawn attention since the first wave of infections in March 2013, and raised more grave concerns with its increased potential to spread among humans. Experimental studies have revealed several host and virulence markers, indicating differential host binding preferences which can help estimate the potential of causing a pandemic. Here we systematically investigate the sequence pattern and structural characteristics of novel influenza A/H7N9 using computational approaches.Results: The sequence analysis highlighted mutations in protein functional domains of influenza viruses. Molecular docking and molecular dynamics simulation revealed that the hemagglutinin (HA) of A/Taiwan/1/2017(H7N9) strain enhanced the binding with both avian and human receptor analogs, compared with the previous A/Shanghai/02/ 2013(H7N9) strain. The Molecular Mechanics - Poisson Boltzmann Surface Area (MM-PBSA) calculation revealed the change of residue-ligand interaction energy and detected the residues with conspicuous binding preference.Conclusion: The results are novel and specific to the emerging influenza A/Taiwan/1/2017(H7N9) strain compared with A/Shanghai/02/2013(H7N9). Its enhanced ability to bind human receptor analogs, which are abundant in the human upper respiratory tract, may be responsible for the recent outbreak. Residues showing binding preference were detected, which could facilitate monitoring the circulating influenza viruses.
机译:背景:流感病毒正在进行连续和快速的进化。自2013年3月的第一波感染以来,致命流感A / H7N9引起了关注,并提高了对人类蔓延的增加的潜力。实验研究揭示了几个宿主和毒力标记,表明差异宿主结合偏好,这有助于估计导致大流行的潜力。在这里,我们使用计算方法系统地研究新型流感A / H7N9的序列模式和结构特征。结果:序列分析突出的流感病毒蛋白质功能结构域中的突变。分子对接和分子动力学模拟显示,与前一个A /Shanga期/ 02/2013(H7N9)相比,A /台湾/ 2017年(H7N9)菌株(H7N9)菌株(H7N9)菌株的血凝素(HA)增强了与禽类和人类受体类似物的结合拉紧。分子力学 - 泊松Boltzmann表面积(MM-PBSA)计算揭示了残留物 - 配体相互作用能量的变化,并检测了具有显着结合偏好的残基。结论:结果是新兴流感A /台湾/台湾/台湾/台湾/ 1 / 2017(H7N9)应变与A / Shanghai / 02/203(H7N9)相比。其增强的结合人类受体类似物在人类上呼吸道中具有丰富的能力,可能对最近的爆发负责。检测显示结合偏好的残基,其可以促进监测循环的流感病毒。

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