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通过全长单B细胞转录组学和匹配的单倍型解析种系组装在人血液中进行从头抗体发现。

De novo antibody discovery in human blood from full-length single B cell transcriptomics and matching haplotyped-resolved germline assemblies.

作者信息

Beaulaurier John, Ly Lynn, Duty J Andrew, Tyer Carly, Stevens Christian, Hung Chuan-Tien, Sookdeo Akash, Drong Alex W, Kowdle Shreyas, Turner Daniel J, Juul Sissel, Hickey Scott, Lee Benhur

出版信息

bioRxiv. 2024 Mar 29:2024.03.26.586834. doi: 10.1101/2024.03.26.586834.

Abstract

Immunoglobulin (IGH, IGK, IGL) loci in the human genome are highly polymorphic regions that encode the building blocks of the light and heavy chain IG proteins that dimerize to form antibodies. The processes of V(D)J recombination and somatic hypermutation in B cells are responsible for creating an enormous reservoir of highly specific antibodies capable of binding a vast array of possible antigens. However, the antibody repertoire is fundamentally limited by the set of variable (V), diversity (D), and joining (J) alleles present in the germline IG loci. To better understand how the germline IG haplotypes contribute to the expressed antibody repertoire, we combined genome sequencing of the germline IG loci with single-cell transcriptome sequencing of B cells from the same donor. Sequencing and assembly of the germline IG loci captured the IGH locus in a single fully-phased contig where the maternal and paternal contributions to the germline V, D, and J repertoire can be fully resolved. The B cells were collected following a measles, mumps, and rubella (MMR) vaccination, resulting in a population of cells that were activated in response to this specific immune challenge. Single-cell, full-length transcriptome sequencing of these B cells resulted in whole transcriptome characterization of each cell, as well as highly-accurate consensus sequences for the somatically rearranged and hypermutated light and heavy chain IG transcripts. A subset of antibodies synthesized based on their consensus heavy and light chain transcript sequences demonstrated binding to measles antigens and neutralization of measles live virus.

摘要

人类基因组中的免疫球蛋白(IGH、IGK、IGL)基因座是高度多态性区域,编码轻链和重链免疫球蛋白(IG)蛋白的组成部分,这些蛋白二聚化形成抗体。B细胞中的V(D)J重组和体细胞超突变过程负责产生大量高度特异性抗体,能够结合大量可能的抗原。然而,抗体库从根本上受到种系IG基因座中存在的可变(V)、多样性(D)和连接(J)等位基因集合的限制。为了更好地理解种系IG单倍型如何对表达的抗体库做出贡献,我们将种系IG基因座的基因组测序与来自同一供体的B细胞的单细胞转录组测序相结合。种系IG基因座的测序和组装在一个单一的完全定相重叠群中捕获了IGH基因座,其中对种系V、D和J库的母本和父本贡献可以完全解析。在麻疹、腮腺炎和风疹(MMR)疫苗接种后收集B细胞,从而产生一群因这种特定免疫挑战而被激活的细胞。对这些B细胞进行单细胞全长转录组测序,得到了每个细胞的全转录组特征,以及经体细胞重排和超突变的轻链和重链IG转录本的高精度共有序列。根据其共有重链和轻链转录本序列合成的一部分抗体表现出与麻疹抗原的结合以及对麻疹活病毒的中和作用。

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