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寨卡病毒的正常模式分析。

Normal mode analysis of Zika virus.

机构信息

School of Mechanical Engineering, Sungkyunkwan University, Suwon, 16419, South Korea.

Korea Institute for Advanced Study, Seoul, 02455, South Korea.

出版信息

Comput Biol Chem. 2018 Feb;72:53-61. doi: 10.1016/j.compbiolchem.2018.01.004. Epub 2018 Jan 12.

Abstract

In recent years, Zika virus (ZIKV) caused a new pandemic due to its rapid spread and close relationship with microcephaly. As a result, ZIKV has become an obvious global health concern. Information about the fundamental viral features or the biological process of infection remains limited, despite considerable efforts. Meanwhile, the icosahedral shell structure of the mature ZIKV was recently revealed by cryo-electron microscopy. This structural information enabled us to simulate ZIKV. In this study, we analyzed the dynamic properties of ZIKV through simulation from the mechanical viewpoint. We performed normal mode analysis (NMA) for a dimeric structure of ZIKV consisting of the envelope proteins and the membrane proteins as a unit structure. By analyzing low-frequency normal modes, we captured intrinsic vibrational motions and defined basic vibrational properties of the unit structure. Moreover, we also simulated the entire shell structure of ZIKV at the reduced computational cost, similar to the case of the unit structure, by utilizing its icosahedral symmetry. From the NMA results, we can not only comprehend the putative dynamic fluctuations of ZIKV but also verify previous inference such that highly mobile glycosylation sites would play an important role in ZIKV. Consequently, this theoretical study is expected to give us an insight on the underlying biological functions and infection mechanism of ZIKV.

摘要

近年来,寨卡病毒(ZIKV)由于其快速传播和与小头症的密切关系而引发了新的大流行。因此,ZIKV 已成为明显的全球健康关注点。尽管付出了相当大的努力,但有关基本病毒特征或感染的生物学过程的信息仍然有限。与此同时,最近通过冷冻电子显微镜揭示了成熟 ZIKV 的二十面体壳结构。这些结构信息使我们能够对 ZIKV 进行模拟。在这项研究中,我们从力学角度通过模拟分析了 ZIKV 的动态特性。我们对由包膜蛋白和膜蛋白组成的 ZIKV 二聚体结构进行了正常模式分析(NMA)。通过分析低频正常模式,我们捕捉到了固有振动运动,并定义了单元结构的基本振动特性。此外,我们还通过利用其二十面体对称性,以类似单元结构的方式,以降低的计算成本模拟了整个 ZIKV 壳结构。通过 NMA 结果,我们不仅可以理解 ZIKV 的假定动态波动,还可以验证先前的推断,即高度移动的糖基化位点在 ZIKV 中起着重要作用。因此,这项理论研究有望使我们深入了解 ZIKV 的潜在生物学功能和感染机制。

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