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Revealing complete complex KIR haplotypes phased by long-read sequencing technology

机译:通过长期测序技术揭示完整的复杂KIR单倍型

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摘要

The killer cell immunoglobulin-like receptor (KIR) region of human chromosome 19 contains up to 16 genes for natural killer (NK) cell receptors that recognize human leukocyte antigen (HLA)/peptide complexes and other ligands. The KIR proteins fulfill functional roles in infections, pregnancy, autoimmune diseases and transplantation. However, their characterization remains a constant challenge. Not only are the genes highly homologous due to their recent evolution by tandem duplications, but the region is structurally dynamic due to frequent transposon-mediated recombination. A sequencing approach that precisely captures the complexity of KIR haplotypes for functional annotation is desirable. We present a unique approach to haplotype the KIR loci using single-molecule, real-time (SMRT) sequencing. Using this method, we have—for the first time—comprehensively sequenced and phased sixteen KIR haplotypes from eight individuals without imputation. The information revealed four novel haplotype structures, a novel gene-fusion allele, novel and confirmed insertion/deletion events, a homozygous individual, and overall diversity for the structural haplotypes and their alleles. These KIR haplotypes augment our existing knowledge by providing high-quality references, evolutionary informers, and source material for imputation. The haplotype sequences and gene annotations provide alternative loci for the KIR region in the human genome reference GrCh38.p8.
机译:人类第19号染色体的杀伤细胞免疫球蛋白样受体(KIR)区域包含多达16个用于识别人类白细胞抗原(HLA)/肽复合物和其他配体的自然杀伤(NK)细胞受体的基因。 KIR蛋白在感染,妊娠,自身免疫性疾病和移植中发挥功能性作用。但是,它们的表征仍然是一个持续的挑战。这些基因不仅由于其最近通过串联重复进化而高度同源,而且由于频繁的转座子介导的重组,该区域在结构上是动态的。期望一种能精确捕获用于功能注释的KIR单倍型的复杂性的测序方法。我们提出了一种使用单分子实时(SMRT)测序对KIR基因座进行单倍型分析的独特方法。使用这种方法,我们首次获得了来自8个个体的16种KIR单倍型的全面排序和分阶段,而没有进行推算。该信息揭示了四个新颖的​​单倍型结构,一个新颖的基因融合等位基因,新颖的和已确认的插入/缺失事件,一个纯合的个体以及该结构单倍型及其等位基因的总体多样性。这些KIR单倍型通过提供高质量的参考资料,进化信息分子和用于推算的原始资料,增强了我们的现有知识。单倍型序列和基因注释为人类基因组参考文献GrCh38.p8中的KIR区提供了替代基因座。

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