Author:
Palmer Douglas C.,Webber Beau R.,Patel Yogin,Johnson Matthew J.,Kariya Christine M.,Lahr Walker S.,Parkhurst Maria R.,Gartner Jared J,Prickett Todd D,Lowery Frank J.,Kishton Rigel J.,Gurusamy Devikala,Franco Zulmarie,Vodnala Suman K.,Diers Miechaleen D.,Wolf Natalie K.,Slipek Nicholas J.,McKenna David H.,Sumstad Darin,Viney Lydia,Henley Tom,Bürckstümmer Tilmann,Baker Oliver,Hu Ying,Yan Chunhua,Meerzaman Daoud,Padhan Kartik,Lo Winnie,Malekzadeh Parisa,Jia Li,Deniger Drew C.,Patel Shashank J.,Robbins Paul F.,McIvor R. Scott,Choudhry Modassir,Rosenberg Steven A.,Moriarity Branden S.,Restifo Nicholas P.
Abstract
AbstractWhile neoantigen-specific tumor infiltrating lymphocytes (TIL) can be derived from in antigen-expressing tumors, their adoptive transfer fails to consistently elicit durable tumor regression. There has been much focus on the role of activation/exhaustion markers such as PD1, CD39 and TOX in TIL senescence. We found these markers were inversely expressed to Cytokine-Induced SH2 protein (CISH), a negative regulator of TCR signaling and tumor immunity in mice. To evaluate the physiological role of CISH in human TIL we developed a high-efficiency CRIPSR-based method to knock out CISH in fully mature TIL. CISH KO resulted in increased T cell receptor (TCR) avidity, tumor cytolysis and neoantigen recognition. CISH expression in the tumor resections correlated with TIL inactivity against p53 hotspot mutations and CISH KO in TIL unmasked reactivity against these universal neoantigens. While CISH KO resulted in T cell hyperactivation and expansion it did not alter maturation, perhaps by preferential PLCγ-1 and not AKT inhibition. Lastly, CISH KO in T cells increased PD1 expression and the adoptive transfer of Cish KO T cells synergistically combines with PD1 antibody blockade resulting in durable tumor regression and survival in a preclinical animal model. These data offer new insights into the regulation of neoantigen recognition, expression of activation/exhaustion markers, and functional/maturation signals in tumor-specific T cells.
Publisher
Cold Spring Harbor Laboratory