T细胞受体
鉴定(生物学)
基因
计算生物学
抗原
吞吐量
生物
遗传学
计算机科学
T细胞
免疫系统
植物
电信
无线
作者
Carsten Linnemann,Bianca Heemskerk,Pia Kvistborg,Roelof J.C. Kluin,Dmitriy A. Bolotin,Xiaojing Chen,Kaspar Bresser,Marja Nieuwland,Remko Schotte,Samira Michels,Raquel Gomez-Eerland,Lorenz Jahn,Pleun Hombrink,Nicolas Legrand,Chengyi J. Shu,Ilgar Z. Mamedov,Arno Velds,Christian U. Blank,John B.A.G. Haanen,Maria A. Turchaninova
出处
期刊:Nature Medicine
[Nature Portfolio]
日期:2013-10-13
卷期号:19 (11): 1534-1541
被引量:171
摘要
The transfer of T cell receptor (TCR) genes into patient T cells is a promising approach for the treatment of both viral infections and cancer. Although efficient methods exist to identify antibodies for the treatment of these diseases, comparable strategies to identify TCRs have been lacking. We have developed a high-throughput DNA-based strategy to identify TCR sequences by the capture and sequencing of genomic DNA fragments encoding the TCR genes. We establish the value of this approach by assembling a large library of cancer germline tumor antigen-reactive TCRs. Furthermore, by exploiting the quantitative nature of TCR gene capture, we show the feasibility of identifying antigen-specific TCRs in oligoclonal T cell populations from either human material or TCR-humanized mice. Finally, we demonstrate the ability to identify tumor-reactive TCRs within intratumoral T cell subsets without knowledge of antigen specificities, which may be the first step toward the development of autologous TCR gene therapy to target patient-specific neoantigens in human cancer.
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