Enhanced T cell effector activity by targeting the Mediator kinase module

Katherine A. Freitas(Stanford University), Julia A. Belk(Stanford University), Elena Sotillo(Stanford University), Patrick J. Quinn(Stanford University), María C. Ramello(Stanford University), Meena Malipatlolla(Stanford University), Bence Dániel(Stanford University), Katalin Sándor(Stanford University), Dorota D. Klysz(Stanford University), Jeremy Bjelajac(Stanford University), Peng Xu(Stanford University), Kylie Burdsall(Stanford University), Victor Tieu(Stanford University), Vandon T. Duong(Stanford University), Micah G. Donovan(University of Colorado Anschutz Medical Campus), Evan W. Weber(Parker Institute for Cancer Immunotherapy), Howard Y. Chang(Howard Hughes Medical Institute), Robbie G. Majzner(Stanford Medicine), Joaquı́n M. Espinosa(University of Colorado Anschutz Medical Campus), Ansuman T. Satpathy(Parker Institute for Cancer Immunotherapy), Crystal L. Mackall(Parker Institute for Cancer Immunotherapy)
Science
November 10, 2022
Cited by 137Open Access
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Abstract

T cells are the major arm of the immune system responsible for controlling and regressing cancers. To identify genes limiting T cell function, we conducted genome-wide CRISPR knockout screens in human chimeric antigen receptor (CAR) T cells. Top hits were MED12 and CCNC , components of the Mediator kinase module. Targeted MED12 deletion enhanced antitumor activity and sustained the effector phenotype in CAR- and T cell receptor–engineered T cells, and inhibition of CDK8/19 kinase activity increased expansion of nonengineered T cells. MED12 -deficient T cells manifested increased core Meditator chromatin occupancy at transcriptionally active enhancers—most notably for STAT and AP-1 transcription factors—and increased IL2RA expression and interleukin-2 sensitivity. These results implicate Mediator in T cell effector programming and identify the kinase module as a target for enhancing potency of antitumor T cell responses.


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