生物
B细胞受体
抗体
B细胞
病毒学
抗原
断点群集区域
DNA测序
遗传学
计算生物学
分子生物学
DNA
基因
作者
Ian Setliff,Andrea R. Shiakolas,Kelsey A. Pilewski,Amyn A. Murji,Rutendo E. Mapengo,Katarzyna Janowska,Simone I. Richardson,Charissa Oosthuysen,Nagarajan Raju,Larance Ronsard,Masaru Kanekiyo,Juliana S. Qin,Kevin J. Kramer,Allison R. Greenplate,Wyatt J. McDonnell,Barney S. Graham,Mark Connors,Daniel Lingwood,Priyamvada Acharya,Lynn Morris
出处
期刊:Cell
[Cell Press]
日期:2019-11-28
卷期号:179 (7): 1636-1646.e15
被引量:275
标识
DOI:10.1016/j.cell.2019.11.003
摘要
B cell receptor (BCR) sequencing is a powerful tool for interrogating immune responses to infection and vaccination, but it provides limited information about the antigen specificity of the sequenced BCRs. Here, we present LIBRA-seq (linking B cell receptor to antigen specificity through sequencing), a technology for high-throughput mapping of paired heavy- and light-chain BCR sequences to their cognate antigen specificities. B cells are mixed with a panel of DNA-barcoded antigens so that both the antigen barcode(s) and BCR sequence are recovered via single-cell next-generation sequencing. Using LIBRA-seq, we mapped the antigen specificity of thousands of B cells from two HIV-infected subjects. The predicted specificities were confirmed for a number of HIV- and influenza-specific antibodies, including known and novel broadly neutralizing antibodies. LIBRA-seq will be an integral tool for antibody discovery and vaccine development efforts against a wide range of antigen targets.
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