| Literature DB >> 26290413 |
Bryan Howie1, Anna M Sherwood1, Ashley D Berkebile1, Jan Berka1, Ryan O Emerson1, David W Williamson1, Ilan Kirsch1, Marissa Vignali1, Mark J Rieder1, Christopher S Carlson2, Harlan S Robins3.
Abstract
The T cell receptor (TCR) protein is a heterodimer composed of an α chain and a β chain. TCR genes undergo somatic DNA rearrangements to generate the diversity of T cell binding specificities needed for effective immunity. Recently, high-throughput immunosequencing methods have been developed to profile the TCR α (TCRA) and TCR β (TCRB) repertoires. However, these methods cannot determine which TCRA and TCRB chains combine to form a specific TCR, which is essential for many functional and therapeutic applications. We describe and validate a method called pairSEQ, which can leverage the diversity of TCR sequences to accurately pair hundreds of thousands of TCRA and TCRB sequences in a single experiment. Our TCR pairing method uses standard laboratory consumables and equipment without the need for single-cell technologies. We show that pairSEQ can be applied to T cells from both blood and solid tissues, such as tumors.Entities:
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Year: 2015 PMID: 26290413 DOI: 10.1126/scitranslmed.aac5624
Source DB: PubMed Journal: Sci Transl Med ISSN: 1946-6234 Impact factor: 17.956