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Grouping of large populations into few CTL immune ‘response-types from influenza H1N1 genome analysis

机译:从H1N1流感基因组分析中将大量人群分为少数CTL免疫反应类型

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摘要

Despite extensive work on influenza, a number of questions still remain open about why individuals are differently susceptible to the disease and why only some strains lead to epidemics. Here we study the effect of human leukocyte antigen (HLA) genotype heterogeneity on possible cytotoxic T-lymphocyte (CTL) response to 186 influenza H1N1 genomes. To enable such analysis, we reconstruct HLA genotypes in different populations using a probabilistic method. We find that epidemic strains in general correlate with poor CTL response in populations. Our analysis shows that large populations can be classified into a small number of groups called response-types, specific to a given viral strain. Individuals of a response-type are expected to exhibit similar CTL responses. Extent of CTL responses varies significantly across different populations and increases with increase in genetic heterogeneity. Overall, our analysis presents a conceptual advance towards understanding how genetic heterogeneity influences disease susceptibility in individuals and in populations. We also obtain lists of top-ranking epitopes and proteins, ranked on the basis of conservation, antigenic cross-reactivity and population coverage, which provide ready short-lists for rational vaccine design. Our method is fairly generic and has the potential to be applied for studying other viruses.
机译:尽管在流感方面进行了广泛的研究,但关于个人为何对这种疾病易感性不同以及为什么仅某些菌株会导致流行的问题仍存在许多问题。在这里,我们研究了人类白细胞抗原(HLA)基因型异质性对186种流感H1N1基因组可能的细胞毒性T淋巴细胞(CTL)反应的影响。为了进行此类分析,我们使用概率方法在不同人群中重建HLA基因型。我们发现,流行株通常与人群中不良的CTL反应相关。我们的分析表明,对于特定的病毒株,大批人群可分为少数几类,称为反应型。预期响应类型的个体表现出相似的CTL响应。 CTL反应的程度在不同人群之间差异很大,并且随着遗传异质性的增加而增加。总体而言,我们的分析为理解遗传异质性如何影响个人和人群的疾病易感性提供了概念上的进展。我们还获得了基于保护性,抗原交叉反应性和种群覆盖率排名最高的表位和蛋白质的清单,这些清单为合理的疫苗设计提供了容易入围的清单。我们的方法相当通用,并且有潜力用于研究其他病毒。

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