Tanno Hidetaka, McDaniel Jonathan R, Stevens Christopher A, Voss William N, Li Jie, Durrett Russell, Lee Jiwon, Gollihar Jimmy, Tanno Yuri, Delidakis George, Pothukuchy Arti, Ellefson Jared W, Goronzy Jörg J, Maynard Jennifer A, Ellington Andrew D, Ippolito Gregory C, Georgiou George
Department of Chemical Engineering, University of Texas at Austin, Austin, TX, USA.
Institute for Cellular and Molecular Biology, University of Texas at Austin, Austin, TX, USA.
Sci Adv. 2020 Apr 22;6(17):eaay9093. doi: 10.1126/sciadv.aay9093. eCollection 2020 Apr.
Natively paired sequencing (NPS) of B cell receptors [variable heavy (VH) and light (VL)] and T cell receptors (TCRb and TCRa) is essential for the understanding of adaptive immunity in health and disease. Despite many recent technical advances, determining the VH:VL or TCRb:a repertoire with high accuracy and throughput remains challenging. We discovered that the recently engineered xenopolymerase, RTX, is exceptionally resistant to cell lysate inhibition in single-cell emulsion droplets. We capitalized on the characteristics of this enzyme to develop a simple, rapid, and inexpensive in-droplet overlap extension reverse transcription polymerase chain reaction method for NPS not requiring microfluidics or other specialized equipment. Using this technique, we obtained high yields (5000 to >20,000 per sample) of paired VH:VL or TCRb:a clonotypes at low cost. As a demonstration, we performed NPS on peripheral blood plasmablasts and T follicular helper cells following seasonal influenza vaccination and discovered high-affinity influenza-specific antibodies and TCRb:a.
对B细胞受体[重链可变区(VH)和轻链可变区(VL)]以及T细胞受体(TCRβ和TCRα)进行天然配对测序(NPS)对于理解健康和疾病状态下的适应性免疫至关重要。尽管最近有许多技术进步,但要高精度、高通量地确定VH:VL或TCRβ:α库仍然具有挑战性。我们发现,最近工程改造的异源聚合酶RTX在单细胞乳液液滴中对细胞裂解物抑制具有极强的抗性。我们利用这种酶的特性,开发了一种简单、快速且廉价的用于NPS的液滴内重叠延伸逆转录聚合酶链反应方法,该方法不需要微流控或其他专用设备。使用该技术,我们以低成本获得了高产率(每个样本5000至超过20000个)的配对VH:VL或TCRβ:α克隆型。作为例证,我们在季节性流感疫苗接种后的外周血浆母细胞和T滤泡辅助细胞上进行了NPS,并发现了高亲和力的流感特异性抗体和TCRβ:α。