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Hepatitis E Virus Cysteine Protease Has Papain Like Properties Validated by in silico Modeling and Cell-Free Inhibition Assays

机译:乙型肝炎病毒半胱氨酸蛋白酶具有如杀虫剂在硅型建模和无细胞抑制测定中验证的特性

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摘要

Hepatitis E virus (HEV) has emerged as a global health concern during the last decade. In spite of a high mortality rate in pregnant women with fulminant hepatitis, no antiviral drugs or licensed vaccine is available in India. HEV-protease is a pivotal enzyme responsible for ORF1 polyprotein processing leading to cleavage of the non-structural enzymes involved in virus replication. HEV-protease region encoding 432–592 amino acids of Genotype-1 was amplified, expressed in Sf21 cells and purified in its native form. The recombinant enzyme was biochemically characterized using SDS-PAGE, Western blotting and Immunofluorescence. The enzyme activity and the inhibition studies were conducted using Zymography, FTC-casein based protease assay and ORF1 polyprotein digestion. To conduct ORF1 digestion assay, the polyprotein, natural substrate of HEV-protease, was expressed in E. coli and purified. Cleavage of 186 kDa ORF1 polyprotein by the recombinant HEV-protease lead to appearance of non-structural proteins viz. Methyltransferase, Protease, Helicase and RNA dependent RNA polymerase which were confirmed through immunoblotting using antibodies generated against specific epitopes of the enzymes. FTC-casein substrate was used for kinetic studies to determine Km and Vmax of the enzyme and also the effect of different metal ions and other protease inhibitors. A 95% inhibition was observed with E-64 which was validated through in silico analysis. The correlation coefficient between inhibition and docking score of Inhibitors was found to have a significant value of r2 = 0.75. The predicted 3D model showed two domain architecture structures similar to Papain like cysteine protease though they differed in arrangements of alpha helices and beta sheets. Hence, we propose that HEV-protease has characteristics of “Papain-like cysteine protease,” as determined through structural homology, active site residues and class-specific inhibition. However, conclusive nature of the enzyme remains to be established.
机译:乙型肝炎病毒(HEV)在过去十年中被出现为全球健康问题。尽管孕妇患有过度肝炎的孕妇死亡率很高,但印度没有抗病毒药物或许可的疫苗。 HEV-蛋白酶是负责ORF1多蛋白处理的枢轴酶,导致涉及病毒复制的非结构酶的切割。编码基因型-1的432-592氨基酸的HEV蛋白酶区域被扩增,在SF21细胞中表达并以其天然形式纯化。使用SDS-PAGE,蛋白质印迹和免疫荧光生物化学表征重组酶。使用酶谱系,FTC-酪蛋白基蛋白酶测定和ORF1多蛋白消化进行酶活性和抑制研究。为了进行ORF1消化测定,在大肠杆菌中表达HEV-蛋白酶的多蛋白,HEV-蛋白酶的天然基质并纯化。通过重组HEV-蛋白酶切割186 kDa Orf1多蛋白,导致非结构蛋白质的外观。通过使用针对酶的特异性表位产生的抗体通过免疫印迹通过免疫引起的甲基转移酶,蛋白酶,螺旋酶和RNA依赖性RNA聚合酶。 FTC-酪蛋白基材用于动力学研究,以确定酶的KM和VMAX,以及不同金属离子和其他蛋白酶抑制剂的作用。用E-64观察到95%的抑制,通过硅分析验证。发现抑制剂的抑制作用之间的相关系数具有显着的R2 = 0.75的值。预测的3D模型显示了两个域架构结构,类似于蛋白质蛋白酶,虽然它们在α螺旋和β板的布置中不同。因此,我们提出了HEV-蛋白酶具有“木瓜状半胱氨酸蛋白酶”的特征,如通过结构同源性,活性位点残留物和特异性抑制所确定的。然而,酶的结论性质仍有待建立。

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