Discovery of U2AF1 neoantigens in myeloid neoplasms

Author:

Biernacki Melinda AnnORCID,Lok Jessica,Black Ralph Graeme,Foster Kimberly A,Cummings Carrie,Woodward Kyle B,Monahan Tim,Oehler Vivian G,Stirewalt Derek L,Wu David,Rongvaux Anthony,Deeg Hans Joachim,Bleakley Marie

Abstract

BackgroundMyelodysplastic syndromes (MDS) arise from somatic mutations acquired in hematopoietic stem and progenitor cells, causing cytopenias and predisposing to transformation into secondary acute myeloid leukemia (sAML). Recurrent mutations in spliceosome genes, includingU2AF1, are attractive therapeutic targets as they are prevalent in MDS and sAML, arise early in neoplastic cells, and are generally absent from normal cells, including normal hematopoietic cells. MDS and sAML are susceptible to T cell-mediated killing, and thus engineered T-cell immunotherapies hold promise for their treatment. We hypothesized that targeting spliceosome mutation-derived neoantigens with transgenic T-cell receptor (TCR) T cells would selectively eradicate malignant cells in MDS and sAML.MethodsWe identified candidate neoantigen epitopes from recurrent protein-coding mutations in the spliceosome genesSRSF2andU2AF1using a multistep in silico process. Candidate epitopes predicted to bind human leukocyte antigen (HLA) class I, be processed and presented from the parent protein, and not to be subject to tolerance then underwent in vitro immunogenicity screening. CD8+T cells recognizing immunogenic neoantigen epitopes were evaluated in in vitro assays to assess functional avidity, confirm the predicted HLA restriction, the potential for recognition of similar peptides, and the ability to kill neoplastic cells in an antigen-specific manner. Neoantigen-specific TCR were sequenced, cloned into lentiviral vectors, and transduced into third-party T cells after knock-out of endogenous TCR, then tested in vitro for specificity and ability to kill neoplastic myeloid cells presenting the neoantigen. The efficacy of neoantigen-specific T cells was evaluated in vivo in a murine cell line-derived xenograft model.ResultsWe identified two neoantigens created from a recurrent mutation inU2AF1, isolated CD8+T cells specific for the neoantigens, and demonstrated that transferring their TCR to third-party CD8+T cells is feasible and confers specificity for the U2AF1 neoantigens. Finally, we showed that these neoantigen-specific TCR-T cells do not recognize normal hematopoietic cells but efficiently kill malignant myeloid cells bearing the specific U2AF1 mutation, including primary cells, in vitro and in vivo.ConclusionsThese data serve as proof-of-concept for developing precision medicine approaches that use neoantigen-directed T-cell receptor-transduced T cells to treat MDS and sAML.

Funder

Gerdin Family Endowed Chair for Leukemia Research, Fred Hutch

Be The Match Foundation

National Cancer Institute

MPN Research Foundation

Publisher

BMJ

Subject

Cancer Research,Pharmacology,Oncology,Molecular Medicine,Immunology,Immunology and Allergy

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