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Co-evolving mutations in hepatitis C virus in the context of immune escape against neutralising antibody responses - A bioinformatic workflow for the analysis of co-evolving mutations in viral genomes

机译:免疫逸出抗体反应中的丙型肝炎病毒中的共同突变抗体 - 一种分析病毒基因组的共同突变的生物信息流程

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Rapidly evolving pathogens, such as RNA viruses exploit the high mutation rate to avoid or escape host immune response. Despite a random mutation process, the relatively small size of their genomes imposes evolutionary constraints. Viral evolution hence is characterized by highly connected mutations that arise within the same genome through a random sequential process. In this abstract we present a bioinformatics pipeline that aims at predicting co-evolving mutations within ongoing hepatitis C viral infection which result in a significant advantage for the virus in terms of survival from the adaptive response exerted by neutralizing antibodies. This workflow utilizes the idea of Mutual information to identify pairs of potentially related genomic sites that confer a selective advantage.
机译:快速发展的病原体,如RNA病毒利用高突变率来避免或逃避宿主免疫应答。尽管存在随机突变过程,但其基因组的相对较小尺寸征集进化约束。因此,病毒进化的特征在于通过随机顺序过程在同一基因组内产生的高度连接的突变。在此摘要中,我们提出了一种生物信息学管道,其目的在于在持续的丙型肝炎病毒感染内预测共同不断发展的突变,其在通过中和抗体施加的自适应响应中对病毒产生显着优势。该工作流利用相互信息的思想来识别赋予选择性优势的潜在相关基因组位点。

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