传染性支气管炎病毒M41和CR88 (793/B)血清型S1-Spike糖蛋白新B细胞和t细胞表位的预测和计算机鉴定及其在多肽疫苗中的应用

Q1 Biochemistry, Genetics and Molecular Biology Advances in Bioinformatics Pub Date : 2016-09-07 DOI:10.1155/2016/5484972
F. Bande, S. Arshad, M. Bejo, S. Kadkhodaei, A. Omar
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引用次数: 15

摘要

采用生物信息学方法预测了M41和CR88 IBV株S1糖蛋白的抗原b细胞和t细胞表位。在M41 IBV株中发现了保守的线性b细胞表位肽YTSNETTDVTS175-185,而在CR88 IBV株中发现了3种表位,分别为VSNASPNSGGVD279-290、HPKCNFRPENI328-338和NETNNAGSVSDCTAGT54-69。对M41 IBV菌株MHCI结合肽的分析显示,M41 IBV菌株中存在15个抗原肽,其中12个高度保守,占总数的96-100%。有趣的是,其中三种肽GGPITYKVM208、WFNSLSVSI356和YLADAGLAI472具有相对较高的抗原性指数(bbb1.0)。另一方面,在CR88 IBV株中鉴定出11个MHCI结合表位肽。其中,5个多肽被发现高度保守,范围在90%到97%之间。然而,WFNSLSVSL358、SYNISAASV88和YNISAASVA89肽具有较高的抗原性评分(bbb1.0)。抗原b细胞和t细胞肽的结合在许多菌株中都是保守的,作为引起体液和CTL免疫反应的方法,可能会导致一种广泛的疫苗,可以减少使用减毒活疫苗技术控制家禽IBV感染的挑战。
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Prediction and In Silico Identification of Novel B-Cells and T-Cells Epitopes in the S1-Spike Glycoprotein of M41 and CR88 (793/B) Infectious Bronchitis Virus Serotypes for Application in Peptide Vaccines
Bioinformatic analysis was used to predict antigenic B-cell and T-cell epitopes within the S1 glycoprotein of M41 and CR88 IBV strains. A conserved linear B-cell epitope peptide, YTSNETTDVTS175–185, was identified in M41 IBV strains while three such epitopes types namely, VSNASPNSGGVD279–290, HPKCNFRPENI328–338, and NETNNAGSVSDCTAGT54–69, were predicted in CR88 IBV strains. Analysis of MHCI binding peptides in M41 IBV strains revealed the presence of 15 antigenic peptides out of which 12 were highly conserved in 96–100% of the total M41 strains analysed. Interestingly three of these peptides, GGPITYKVM208, WFNSLSVSI356, and YLADAGLAI472, relatively had high antigenicity index (>1.0). On the other hand, 11 MHCI binding epitope peptides were identified in CR88 IBV strains. Of these, five peptides were found to be highly conserved with a range between 90% and 97%. However, WFNSLSVSL358, SYNISAASV88, and YNISAASVA89 peptides comparably showed high antigenicity scores (>1.0). Combination of antigenic B-cells and T-cells peptides that are conserved across many strains as approach to evoke humoral and CTL immune response will potentially lead to a broad-based vaccine that could reduce the challenges in using live attenuated vaccine technology in the control of IBV infection in poultry.
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Advances in Bioinformatics
Advances in Bioinformatics Biochemistry, Genetics and Molecular Biology-Biochemistry, Genetics and Molecular Biology (miscellaneous)
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