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Theoretical assessment of immunogenicity variation on the HA protein of H2N2 influenza virus by using fuzzy integral and SVM classifier

机译:采用模糊积分和SVM分类器对H2N2流感病毒HA蛋白的免疫原性变化的理论评价

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Hemagglutinin (HA) is the surface protein of influenza viruses, which is known to play important role in the infection process. It is the antigen that inducing immune responses and currently be used as the influenza vaccine potency marker. Epitope are some segments in the antigen which could be recognized by the immune system specifically and induce immune response. The T-cell epitopes of protein antigens are some peptides that presented on the cell surface by MHC molecules via the MHC class I pathway or the MHC class II pathway. The antigen presentation mechanisms are different in these two pathways. The MHC class I pathway is used to present endogeneous antigens to cytotoxic T cell, while the MHC class II pathway is used to present the extracellular antigens to helper T cell. The epitope with strong immune response is good target for vaccine design. Recently, the type of H2N2 influenza has a tendency towards popular again. To understand the immunogenicity variation among the HA proteins of H2N2 influenza for the past decade is important for deciphering the infection tendency. It is also a clue to design effective vaccine in advance. Fuzzy measure considers a series of special classes of measures and defined by a special property, respectively. The concept of fuzzy measure theory was introduced by Choquet in 1953 and independently defined by Sugeno in 1974 in the context of fuzzy integrals. The Choquet integral is a fuzzy integral based on any fuzzy measure that provides a computational scheme for information aggregation. In this study, we proposed a novel algorithm with high accuracy in immunogenicity prediction based on fuzzy measure and SVM classifier. Accordingly, we applied this prediction method to assess the immunogenicity variation on the HA protein of H2N2 influenza virus for the past three decades. The results show that the immunogenicity strength decreased for MHC class II response that implied the increasing tendency of influenza outbreak by H2N2 virus.
机译:血凝素(HA)是流感病毒的表面蛋白,已知在感染过程中起重要作用。它是诱导免疫应答,目前用作流感疫苗效力标志物的抗原。表位是抗原中的一些区段,其可以由免疫系统特异性识别并诱导免疫应答。蛋白质抗原的T细胞表位是通过MHC分子通过MHC I类途径或MHC II类途径在细胞表面上呈现的一些肽。抗原呈现机制在这两个途径中是不同的。 MHC I类途径用于向细胞毒性T细胞呈现整体抗原,而MHC II类途径用于向辅助T细胞呈现细胞外抗原。具有强烈免疫应答的表位是疫苗设计的良好目标。最近,H2N2流感的类型倾向于再次受欢迎。为了了解过去十年H2N2流感的HA蛋白质中的免疫原性变化对于解密感染倾向是重要的。它还是预先设计有效疫苗的线索。模糊措施考虑了一系列特殊措施,并分别由特殊财产定义。由1953年的Choquet引入了模糊措施理论的概念,并于1974年独立定义在模糊积分的背景下。 Choquet Integral是基于任何提供信息聚合计算方案的模糊测量的模糊积分。在这项研究中,基于模糊测量和SVM分类器提出了一种具有高精度的新算法。因此,我们应用了这种预测方法,以评估过去三十年来评估H82流感病毒HA蛋白的免疫原性变化。结果表明,对于MHC II类反应的免疫原性强度降低,暗示了H2N2病毒越来越多的流感爆发的趋势。

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