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不同人群的外周血 B 细胞中存在广泛共享的 IGK 重排。

Divergent human populations show extensive shared IGK rearrangements in peripheral blood B cells.

机构信息

School of Biotechnology and Biomolecular Sciences, The University of New South Wales, Sydney, NSW, Australia.

出版信息

Immunogenetics. 2012 Jan;64(1):3-14. doi: 10.1007/s00251-011-0559-z. Epub 2011 Jul 26.

Abstract

We have analysed the transcribed immunoglobulin kappa (IGK) repertoire of peripheral blood B cells from four individuals from two genetically distinct populations, Papua New Guinean and Australian, using high-throughput DNA sequencing. The depth of sequencing data for each individual averaged 5,548 high-quality IGK reads, and permitted genotyping of the inferred IGKV and IGKJ germline gene segments for each individual. All individuals were homozygous at each IGKJ locus and had highly similar inferred IGKV genotypes. Preferential gene usage was seen at both the IGKV and IGKJ loci, but only IGKV segment usage varied significantly between individuals. Despite the differences in IGKV gene utilisation, the rearranged IGK repertoires showed extensive identity at the amino acid level. Public rearrangements (those shared by two or more individuals) made up 60.2% of the total sequenced IGK rearrangements. The total diversity of IGK rearrangements of each individual was estimated to range from just 340 to 549 unique amino acid sequences. Thus, the repertoire of unique expressed IGK rearrangements is dramatically less than previous theoretical estimates of IGK diversity, and the majority of expressed IGK rearrangements are likely to be extensively shared in individual human beings.

摘要

我们使用高通量 DNA 测序技术,分析了来自巴布亚新几内亚和澳大利亚两个具有遗传差异的人群的 4 个人的外周血 B 细胞转录的免疫球蛋白 κ(IGK)库。每个个体的测序数据深度平均为 5548 个高质量的 IGK 读数,允许对每个个体的推断的 IGKV 和 IGKJ 胚系基因片段进行基因分型。所有个体在每个 IGKJ 基因座上均为纯合子,并且具有高度相似的推断的 IGKV 基因型。在 IGKV 和 IGKJ 基因座上都观察到了优先基因的使用,但只有 IGKV 片段的使用在个体之间存在显著差异。尽管在 IGKV 基因利用方面存在差异,但重排的 IGK 库在氨基酸水平上具有广泛的同一性。公共重排在两个人或更多人之间共享,占总测序 IGK 重排的 60.2%。每个个体的 IGK 重排的总多样性估计范围从 340 到 549 个独特的氨基酸序列。因此,表达的独特 IGK 重排库远小于以前对 IGK 多样性的理论估计,并且大多数表达的 IGK 重排可能在个体中广泛共享。

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