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寨卡病毒NS3解旋酶的分子动力学模拟:对RNA结合位点活性的见解

Molecular dynamics simulations of Zika virus NS3 helicase: Insights into RNA binding site activity.

作者信息

Mottin Melina, Braga Rodolpho C, da Silva Roosevelt A, Silva Joao H Martins da, Perryman Alexander L, Ekins Sean, Andrade Carolina Horta

机构信息

LabMol, Faculty of Pharmacy, Universidade Federal de Goias, Goiânia, GO, 74605-170, Brazil.

NCBios, Universidade Federal de Goias, Jatai, GO, 74605-170, Brazil.

出版信息

Biochem Biophys Res Commun. 2017 Oct 28;492(4):643-651. doi: 10.1016/j.bbrc.2017.03.070. Epub 2017 Mar 21.

Abstract

America is still suffering with the outbreak of Zika virus (ZIKV) infection. Congenital ZIKV syndrome has already caused a public health emergency of international concern. However, there are still no vaccines to prevent or drugs to treat the infection caused by ZIKV. The ZIKV NS3 helicase (NS3h) protein is a promising target for drug discovery due to its essential role in viral genome replication. NS3h unwinds the viral RNA to enable the replication of the viral genome by the NS5 protein. NS3h contains two important binding sites: the NTPase binding site and the RNA binding site. Here, we used molecular dynamics (MD) simulations to study the molecular behavior of ZIKV NS3h in the presence and absence of ssRNA and the potential implications for NS3h activity and inhibition. Although there is conformational variability and poor electron densities of the RNA binding loop in various apo flaviviruses NS3h crystallographic structures, the MD trajectories of NS3h-ssRNA demonstrated that the RNA binding loop becomes more stable when NS3h is occupied by RNA. Our results suggest that the presence of RNA generates important interactions with the RNA binding loop, and these interactions stabilize the loop sufficiently that it remains in a closed conformation. This closed conformation likely keeps the ssRNA bound to the protein for a sufficient duration to enable the unwinding/replication activities of NS3h to occur. In addition, conformational changes of this RNA binding loop can change the nature and location of the optimal ligand binding site, according to ligand binding site prediction results. These are important findings to help guide the design and discovery of new inhibitors of NS3h as promising compounds to treat the ZIKV infection.

摘要

美国仍在遭受寨卡病毒(ZIKV)感染的爆发。先天性寨卡病毒综合征已经引发了国际关注的突发公共卫生事件。然而,目前仍然没有预防寨卡病毒感染的疫苗或治疗药物。寨卡病毒NS3解旋酶(NS3h)蛋白因其在病毒基因组复制中的关键作用,是药物研发的一个有前景的靶点。NS3h解开病毒RNA,以使NS5蛋白能够复制病毒基因组。NS3h包含两个重要的结合位点:NTPase结合位点和RNA结合位点。在此,我们利用分子动力学(MD)模拟研究了在有和没有单链RNA(ssRNA)存在的情况下寨卡病毒NS3h的分子行为,以及对NS3h活性和抑制作用的潜在影响。尽管在各种无配体黄病毒NS3h晶体结构中,RNA结合环存在构象变异性且电子密度较差,但NS3h-ssRNA的MD轨迹表明,当NS3h被RNA占据时,RNA结合环变得更加稳定。我们的结果表明,RNA的存在与RNA结合环产生了重要的相互作用,这些相互作用足以稳定该环,使其保持在封闭构象。这种封闭构象可能使ssRNA与蛋白质结合足够长的时间,以使NS3h的解旋/复制活性得以发生。此外,根据配体结合位点预测结果,这个RNA结合环的构象变化可以改变最佳配体结合位点的性质和位置。这些是重要的发现,有助于指导设计和发现新的NS3h抑制剂,作为治疗寨卡病毒感染的有前景的化合物。

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