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Deciphering the fine nucleotide diversity of full HLA class I and class II genes in a well‐documented population from sub‐Saharan Africa

机译:在来自撒哈拉以南非洲的一定程度上的人口中解读全HLA类I和II类基因的细核苷酸多样性

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摘要

With the aim to understand how next‐generation sequencing (NGS) improves both our assessment of genetic variation within populations and our knowledge on HLA molecular evolution, we sequenced and analysed 8 HLA loci in a well‐documented population from sub‐Saharan Africa (Mandenka). The results of full‐gene NGS‐MiSeq sequencing compared with those obtained by traditional typing techniques or limited sequencing strategies showed that segregating sites located outside exon 2 are crucial to describe not only class I but also class II population diversity. A comprehensive analysis of exons 2, 3, 4 and 5 nucleotide diversity at the 8 HLA loci revealed remarkable differences among these gene regions, notably a greater variation concentrated in the antigen recognition sites of class I exons 3 and some class II exons 2, likely associated with their peptide‐presentation function, a lower diversity of HLA‐C exon 3, possibly related to its role as a KIR ligand, and a peculiar molecular diversity of HLA‐A exon 2, revealing demographic signals. Based on full‐length HLA sequences, we also propose that the most frequent DRB1 allele in the studied population, DRB1*13:04 , emerged from an allelic conversion involving 3 potential alleles as donors and DRB1*11:02:01 as recipient. Finally, our analysis revealed a high occurrence of the DRB1*13:04‐DQA1*05:05:01‐DQB1*03:19 haplotype, possibly resulting from a selective sweep due to protection to Onchorcerca volvulus , a prevalent pathogen in West Africa. This study unveils highly relevant information on the molecular evolution of HLA genes in relation to their immune function, calling for similar analyses in other populations living in contrasting environments.
机译:旨在了解下一代测序(NGS)如何改善群体内遗传变异的评估以及我们对HLA分子演化的知识,我们在来自撒哈拉以南非洲(Mandenka)的良好记录的人群中测序和分析了8个HLA基因座)。与传统键入技术或限量测序策略所获得的全基因NGS-miseq测序的结果表明,位于外显子2外的隔离位点至关重要,不仅适用于I类,而且也是II类人群多样性。在8 HLA基因座的外显子2,3,4和5个核苷酸多样性的综合分析揭示了这些基因区域的显着差异,特别是在I外显子3和一些II类外显子2中浓缩的更大变异,可能是可能的与其肽呈递功能相关,HLA-C外显子3的较低分集,可能与其作为KIR配体的作用有关,以及HLA-A外显子2的特殊分子多样性,揭示人口统计信号。基于全长HLA序列,我们还提出了研究人口中最常见的DRB1等位基因,DRB1 * 13:04,从涉及3个潜在等位基因作为捐赠者和DRB1 * 11:02:01作为接收者的等位基因转换。最后,我们的分析显示DRB1 * 13:04-DQA1 * 05:05:01-DQB1 * 03:19单倍型,可能是由于保护扫描到onChorcerca Volvulus,西非普遍的病原体导致的选择性扫描。本研究揭示了关于HLA基因的分子演化与其免疫功能相关的高度相关信息,呼吁在患有对比环境中的其他人群中类似的分析。

著录项

  • 来源
    《HLA.》 |2018年第1期|共16页
  • 作者单位

    Laboratory of Anthropology Genetics and Peopling History Department of Genetics and Evolution ‐;

    Department of PathologyStanford University School of MedicinePalo Alto California;

    Laboratory of Anthropology Genetics and Peopling History Department of Genetics and Evolution ‐;

    INRA UMR 1062 CBGPavenue du Campus AgropolisMontferrier sur Lez France;

    Laboratory of Anthropology Genetics and Peopling History Department of Genetics and Evolution ‐;

    Laboratory of Anthropology Genetics and Peopling History Department of Genetics and Evolution ‐;

    Laboratory of Anthropology Genetics and Peopling History Department of Genetics and Evolution ‐;

    Institute of Genetics and Genomics in GenevaUniversity of GenevaGeneva Switzerland;

    Department of PathologyStanford University School of MedicinePalo Alto California;

    Laboratory of Anthropology Genetics and Peopling History Department of Genetics and Evolution ‐;

    Laboratory of Anthropology Genetics and Peopling History Department of Genetics and Evolution ‐;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医学免疫学;
  • 关键词

    allelic conversion; balancing selection; full‐length HLA genes; HLA nucleotide diversity; Onchocerciasis; population genetics; selective sweep; West Africa;

    机译:等位基因转换;平衡选择;全长HLA基因;HLA核苷酸多样性;onchocerciaSis;人口遗传;选择性扫描;西非;

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