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Neuro-Oncology logoLink to Neuro-Oncology
. 2019 Apr 23;21(Suppl 2):ii93. doi: 10.1093/neuonc/noz036.124

IMMU-03. TUMOR NECROSIS FACTOR OVERCOMES IMMUNE EVASION IN P53-MUTANT MEDULLOBLASTOMA

Alexandra Garancher 1, Hiromichi Suzuki 2, Svasti Haricharan 3, Meher Beigi Masihi 1, Jessica M Rusert 1, Paula S Norris 1, Florent Carrette 1, Megan M Romero 4, Sorana A Morrissy 2, Patryk Skowron 2, Florence MG Cavalli 2, Hamza Farooq 2, Vijay Ramaswamy 2, Steven JM Jones 5, Richard A Moore 5, Andrew J Mungall 5, Yussanne Ma 5, Nina Thiessen 5, Yisu Li 5, Alaide Morcavallo 6, Lin Qi 3, Jacob J Henderson 7, John R Crawford 8, Michael L Levy 8, James M Olson 9, Yoon-Jae Cho 7, Ani Deshpande 1, Xiao-Nan Li 3, Louis Chesler 6, Marco A Marra 5, Oren J Becher 4, Linda M Bradley 1, Carl F Ware 1, Michael D Taylor 2, Robert J Wechsler-Reya 1
PMCID: PMC6477198

Abstract

Many immunotherapies act by enhancing the ability of T cells to kill tumor cells. But T cell killing depends on recognition of antigens presented by Class I MHC (MHC-I) on the tumor cell surface; if a tumor lacks MHC-I, it cannot be recognized by T cells. To study the efficacy of immunotherapy for Group 3 medulloblastoma, we have used mouse models driven by overexpression of Myc and dominant negative p53 (“MP tumors”), or by overexpression of Myc and Gfi1 (“MG tumors”). While MP tumors grow in immunocompetent mice, MG tumors don’t grow, due to T-cell rejection. To understand this difference, we analyzed expression of immunoregulatory molecules, and found that MP tumors completely lack surface MHC-I. Mechanistically, this is because two key proteins required for MHC-I trafficking – TAP1 and ERAP1 – are targets of p53; since MP tumors lack functional p53, they also lack TAP1 and ERAP1, and surface MHC-I. These studies suggest that p53 plays a critical role in determining immunogenicity, and that p53-mutant tumors are resistant to immune attack. To overcome this resistance, we treated tumor cells with agents that regulate MHC-1. We found that low doses of tumor necrosis factor alpha (TNF) can rescue expression of ERAP, TAP and MHC-I on MP tumor cells. In vivo, TNF prolongs survival of tumor-bearing mice, and markedly augments the efficacy of immune checkpoint inhibitors. These results raise the possibility that TNF could be used prior to immunotherapy to render tumors more sensitive to T cell attack.


Articles from Neuro-Oncology are provided here courtesy of Society for Neuro-Oncology and Oxford University Press

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