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深入测定和分析人类配对的重链和轻链抗体库。

In-depth determination and analysis of the human paired heavy- and light-chain antibody repertoire.

机构信息

Department of Chemical Engineering, University of Texas at Austin, Austin, Texas, USA.

1] Department of Chemical Engineering, University of Texas at Austin, Austin, Texas, USA. [2] Laboratory of Molecular Biotechnology, Graduate School of Bioagricultural Sciences, Nagoya University, Nagoya, Japan.

出版信息

Nat Med. 2015 Jan;21(1):86-91. doi: 10.1038/nm.3743. Epub 2014 Dec 15.

Abstract

High-throughput immune repertoire sequencing has emerged as a critical step in the understanding of adaptive responses following infection or vaccination or in autoimmunity. However, determination of native antibody variable heavy-light pairs (VH-VL pairs) remains a major challenge, and no technologies exist to adequately interrogate the >1 × 10(6) B cells in typical specimens. We developed a low-cost, single-cell, emulsion-based technology for sequencing antibody VH-VL repertoires from >2 × 10(6) B cells per experiment with demonstrated pairing precision >97%. A simple flow-focusing apparatus was used to sequester single B cells into emulsion droplets containing lysis buffer and magnetic beads for mRNA capture; subsequent emulsion RT-PCR generated VH-VL amplicons for next-generation sequencing. Massive VH-VL repertoire analyses of three human donors provided new immunological insights including (i) the identity, frequency and pairing propensity of shared, or 'public', VL genes, (ii) the detection of allelic inclusion (an implicated autoimmune mechanism) in healthy individuals and (iii) the occurrence of antibodies with features, in terms of gene usage and CDR3 length, associated with broadly neutralizing antibodies to rapidly evolving viruses such as HIV-1 and influenza.

摘要

高通量免疫受体测序技术在理解感染或接种疫苗后的适应性反应或自身免疫方面已成为一个关键步骤。然而,确定天然抗体可变重链-轻链对(VH-VL 对)仍然是一个主要挑战,目前尚无技术能够充分检测典型标本中的>1×10^6 个 B 细胞。我们开发了一种低成本的单细胞乳液基技术,用于从每个实验中>2×10^6 个 B 细胞中测序抗体 VH-VL 受体库,展示出>97%的配对精度。一个简单的流聚焦装置被用来将单个 B 细胞隔离到含有裂解缓冲液和磁珠的乳液液滴中,用于捕获 mRNA;随后乳液 RT-PCR 生成用于下一代测序的 VH-VL 扩增子。对三个人类供体的大规模 VH-VL 受体库分析提供了新的免疫学见解,包括(i)共享或“公共”VL 基因的身份、频率和配对倾向,(ii)在健康个体中检测到等位基因包含(一种涉及自身免疫的机制),以及(iii)出现具有与快速进化病毒(如 HIV-1 和流感)的广谱中和抗体相关的基因使用和 CDR3 长度特征的抗体。

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