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Illustrating and homology modeling the proteins of the Zika virus

机译:寨卡病毒蛋白质的图解说明和同源建模

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摘要

The Zika virus (ZIKV) is a flavivirus of the family Flaviviridae, which is similar to dengue virus, yellow fever and West Nile virus. Recent outbreaks in South America, Latin America, the Caribbean and in particular Brazil have led to concern for the spread of the disease and potential to cause Guillain-Barré syndrome and microcephaly. Although ZIKV has been known of for over 60 years there is very little in the way of knowledge of the virus with few publications and no crystal structures. No antivirals have been tested against it either in vitro or in vivo. ZIKV therefore epitomizes a neglected disease. Several suggested steps have been proposed which could be taken to initiate ZIKV antiviral drug discovery using both high throughput screens as well as structure-based design based on homology models for the key proteins. We now describe preliminary homology models created for NS5, FtsJ, NS4B, NS4A, HELICc, DEXDc, peptidase S7, NS2B, NS2A, NS1, E stem, glycoprotein M, propeptide, capsid and glycoprotein E using SWISS-MODEL. Eleven out of 15 models pass our model quality criteria for their further use. While a ZIKV glycoprotein E homology model was initially described in the immature conformation as a trimer, we now describe the mature dimer conformer which allowed the construction of an illustration of the complete virion. By comparing illustrations of ZIKV based on this new homology model and the dengue virus crystal structure we propose potential differences that could be exploited for antiviral and vaccine design. The prediction of sites for glycosylation on this protein may also be useful in this regard. While we await a cryo-EM structure of ZIKV and eventual crystal structures of the individual proteins, these homology models provide the community with a starting point for structure-based design of drugs and vaccines as well as a for computational virtual screening.
机译:寨卡病毒(ZIKV)是黄病毒科的黄病毒,类似于登革热病毒,黄热病和西尼罗河病毒。最近在南美,拉丁美洲,加勒比地区,特别是巴西爆发的疫情引起了人们对该病的传播以及引起格林-巴雷综合征和小头畸形的可能性的关注。尽管ZIKV已有60多年的历史,但对这种病毒的了解却很少,出版物很少,没有晶体结构。在体外或体内都没有针对它的抗病毒药物进行测试。因此,ZIKV代表了一种被忽视的疾病。已经提出了一些建议的步骤,这些步骤可以使用高通量筛选以及基于关键蛋白同源性模型的基于结构的设计来启动ZIKV抗病毒药物的发现。现在我们描述使用SWISS-MODEL为NS5,FtsJ,NS4B,NS4A,HELICc,DEXDc,肽酶S7,NS2B,NS2A,NS1,E干,糖蛋白M,前肽,衣壳和糖蛋白E创建的初步同源性模型。 15个模型中有11个通过了我们的模型质量标准,可以进一步使用。虽然ZIKV糖蛋白E同源性模型最初是在未成熟构象中描述为三聚体,但现在我们描述了成熟的二聚体构象体,它允许构建完整的病毒体插图。通过比较基于这种新的同源性模型的ZIKV和登革热病毒晶体结构的图示,我们提出了可用于抗病毒和疫苗设计的潜在差异。在这一方面,预测该蛋白质上糖基化的位点也可能有用。当我们等待ZIKV的低温EM结构以及单个蛋白质的最终晶体结构时,这些同源模型为社区提供了基于结构的药物和疫苗设计以及计算虚拟筛选的起点。

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