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Functional and structural characterization of Ebola virus glycoprotein (1976-2015) - An in silico study

机译:埃博拉病毒糖蛋白(1976-2015) - 硅研究中的功能和结构表征

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Ebola virus (EBOV) is the causative agent of a severe hemorrhagic fever disease associated with high mortality rates in humans. This virus has five strains of which Zaire Ebola virus (ZEBOV) is the first, and most, important, strain. If can be transmitted through contact with contaminated surfaces and objects. The genome of EBOV codes one non-structural and seven structural proteins consisting of two forms of glycoprotein (GP): soluble glycoprotein (sGP) and GP (spike). In this paper, we attempted to characterize and predict physicochemical properties, B-cell epitopes, mutation sites, phosphorylation sites, glycosylation sites, and different protein structures of EBOV GP to provide comprehensive data about changes of this GP during a. 40-years course (1976?2015). GP sequences were obtained from NCBI gene bank from 1976 2015. Rxpasy'sProtParam, PROTSCALE, immuneepitope, Bepipred, BcePred, ABCpred, VaxiJen, DISPHOS, NetPhos, and numerous programs were used to predict and analyze all sequences. More variety of mutations were found in 2015 sequences and mutations were related to huge changes in B-cell epitopes, phosphorylation and glycosylation sites, hi addition, our results determined different sites of disulfide bonds and an important mutation related to IgE epitope as well as four potent B-cell epitopes (380-387, 318-338, 405-438 and 434-475). In this study, we suggested the effect of mutations on GP properties, six positions for disulfide bonds and four phosphorylation sites for protein kinase C enzyme. Selected sequences were shown different sites for O-link and N-link glycosylation. A mutation that changed GP to an allergen protein and has a significant role in vaccine designing as well as four potent B-cell epitopes in GP protein were found.
机译:埃博拉病毒(EBOV)是与人类高死亡率相关的严重出血热疾病的致病因子。该病毒有五种Zaire埃博拉病毒(Zebov)的菌株是第一种,最重要的,菌株。如果可以通过与受污染的表面和物体接触传输。 EBOV的基因组代码由两种形式的糖蛋白(GP)组成的一种非结构和七种结构蛋白质:可溶性糖蛋白(SGP)和GP(尖峰)。在本文中,我们试图表征和预测eBoV GP的物理化学性质,B细胞表位,突变位点,磷酸化位点,糖基化位点和不同蛋白质结构,以提供关于该GP的变化的综合数据。 40年课程(1976年?2015年)。从1976年的NCBI基因库获得GP序列。RxPasy'sprotParam,Protscale,免疫素,Bepipefer,Bcepred,Abcred,Vaxijen,Disphos,Netphos和许多程序用于预测和分析所有序列。在2015年序列中发现了更多种类的突变,并且突变与B细胞表位,磷酸化和糖基化位点的巨大变化有关,加入,我们的结果确定了不同的二硫键位点和与IgE表位相关的重要突变以及四个有效的B细胞表位(380-387,318-338,405-438和434-475)。在这项研究中,我们建议突变对GP性质的影响,二硫键的六个位置和用于蛋白激酶C酶的四个磷酸化位点。显示所选择的序列,用于O-链路和N-连杆糖基化的不同位点。发现了将GP改变为过敏原蛋白的突变,并在疫苗设计中具有重要作用以及GP蛋白中的四种有效的B细胞表位。

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