DHODH inhibition enhances the efficacy of immune checkpoint blockade by increasing cancer cell antigen presentation

Author:

Mullen Nicholas J.1ORCID,Shukla Surendra K.2,Thakur Ravi2,Kollala Sai Sundeep1,Wang Dezhen1,Chaika Nina1,Santana Juan F.3,Miklavcic William R.1,LaBreck Drew A.2,Mallareddy Jayapal Reddy1,Price David H.3,Natarajan Amarnath1,Mehla Kamiya2,Sykes David B.45,Hollingsworth Michael A.1,Singh Pankaj K.1267ORCID

Affiliation:

1. Eppley Institute for Research in Cancer and Allied Diseases, University of Nebraska Medical Center

2. Department of Oncology Science, University of Oklahoma Health Sciences Center

3. Department of Biochemistry and Molecular Biology, University of Iowa

4. Center for Regenerative Medicine, Massachusetts General Hospital

5. Harvard Stem Cell Institute

6. Department of Pathology, University of Oklahoma Health Sciences Center

7. OU Health Stephenson Cancer Center, University of Oklahoma Health Sciences Center

Abstract

Pyrimidine nucleotide biosynthesis is a druggable metabolic dependency of cancer cells, and chemotherapy agents targeting pyrimidine metabolism are the backbone of treatment for many cancers. Dihydroorotate dehydrogenase (DHODH) is an essential enzyme in the de novo pyrimidine biosynthesis pathway that can be targeted by clinically approved inhibitors. However, despite robust preclinical anticancer efficacy, DHODH inhibitors have shown limited single-agent activity in phase 1 and 2 clinical trials. Therefore, novel combination therapy strategies are necessary to realize the potential of these drugs. To search for therapeutic vulnerabilities induced by DHODH inhibition, we examined gene expression changes in cancer cells treated with the potent and selective DHODH inhibitor brequinar (BQ). This revealed that BQ treatment causes upregulation of antigen presentation pathway genes and cell surface MHC class I expression. Mechanistic studies showed that this effect is 1) strictly dependent on pyrimidine nucleotide depletion, 2) independent of canonical antigen presentation pathway transcriptional regulators, and 3) mediated by RNA polymerase II elongation control by positive transcription elongation factor B (P-TEFb). Furthermore, BQ showed impressive single-agent efficacy in the immunocompetent B16F10 melanoma model, and combination treatment with BQ and dual immune checkpoint blockade (anti-CTLA-4 plus anti-PD-1) significantly prolonged mouse survival compared to either therapy alone. Our results have important implications for the clinical development of DHODH inhibitors and provide a rationale for combination therapy with BQ and immune checkpoint blockade.

Publisher

eLife Sciences Publications, Ltd

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