Efficient Identification of Mutated Cancer Antigens Recognized by T Cells Associated with Durable Tumor Regressions
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- 30 June 2014
- journal article
- Published by American Association for Cancer Research (AACR) in Clinical Cancer Research
- Vol. 20 (13) , 3401-3410
- https://doi.org/10.1158/1078-0432.ccr-14-0433
Abstract
Purpose: Cancer immunotherapy with adoptive transfer of tumor-infiltrating lymphocytes (TIL) represents an effective treatment for patients with metastatic melanoma, with the objective regressions in up to 72% of patients in three clinical trials. However, the antigen targets recognized by these effective TILs remain largely unclear. Experimental Design: Melanoma patients 2359 and 2591 both experienced durable complete regressions of metastases ongoing beyond five years following adoptive TIL transfer. Two conventional screening approaches were carried out to identify the antigens recognized by these clinically effective TILs. In addition, a novel approach was developed in this study to identify mutated T-cell antigens by screening a tandem minigene library, which comprised nonsynonymous mutation sequences identified by whole-exome sequencing of autologous tumors. Results: Screening of an autologous melanoma cDNA library using a conventional approach led to the identification of previously undescribed nonmutated targets recognized by TIL 2359 or TIL 2591. In contrast, screening of tandem minigene libraries encoding tumor-specific mutations resulted in the identification of mutated kinesin family member 2C (KIF2C) antigen as a target of TIL 2359, and mutated DNA polymerase alpha subunit B (POLA2) antigen as a target of TIL 2591. Both KIF2C and POLA2 have been found to play important roles in cell proliferation. Conclusions: These findings suggest that the minigene screening approach can facilitate the antigen repertoire analysis of tumor reactive T cells, and lead to the development of new adoptive cell therapies with purified T cells that recognize candidate-mutated antigens derived from genes essential for the carcinogenesis. Clin Cancer Res; 20(13); 3401–10. ©2014 AACR.Keywords
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This publication has 36 references indexed in Scilit:
- Cancer Regression and Neurological Toxicity Following Anti-MAGE-A3 TCR Gene TherapyJournal of Immunotherapy, 2013
- Adoptive immunotherapy for cancer: harnessing the T cell responseNature Reviews Immunology, 2012
- T Cells Targeting Carcinoembryonic Antigen Can Mediate Regression of Metastatic Colorectal Cancer but Induce Severe Transient ColitisMolecular Therapy, 2011
- Frequent Mutations of Chromatin Remodeling Gene ARID1A in Ovarian Clear Cell CarcinomaScience, 2010
- NetMHCpan, a method for MHC class I binding prediction beyond humansImmunogenetics, 2008
- Design and use of conditional MHC class I ligandsNature Medicine, 2006
- Immune recognition of a human renal cancer antigen through post-translational protein splicingNature, 2004
- Cancer immunoediting: from immunosurveillance to tumor escapeNature Immunology, 2002
- Kin I Kinesins Are Microtubule-Destabilizing EnzymesPublished by Elsevier ,1999
- THE DNA REPLICATION FORK IN EUKARYOTIC CELLSAnnual Review of Biochemistry, 1998