Evidence map›Paper›PMID 39281881›Full record

ArticleResearch square2024

IRF2 loss is associated with reduced MHC I pathway transcripts in subsets of most human cancers and causes resistance to checkpoint immunotherapy in human and mouse melanomas.

Gulce Sari, Karthik Dhatchinamoorthy, Laura Orellano-Ariza, Lindsay M Ferreira, Michael A Brehm, Kenneth Rock

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Article in Research square, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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1 · What the graph read from it

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2 · The registry

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3 · Its place in the literature

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4 · The record

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5 · Who and what money

Authors and funding

6 authors.

Gulce SariDepartment of Pathology, UMass Chan Medical School, Worcester, MA, USA.ORCID 0000-0002-8585-5889
Karthik DhatchinamoorthyDepartment of Pathology, UMass Chan Medical School, Worcester, MA, USA.
Laura Orellano-ArizaDepartment of Pathology, UMass Chan Medical School, Worcester, MA, USA.
Lindsay M FerreiraProgram in Molecular Medicine, Diabetes Center of Excellence, UMass Chan Medical School, Worcester, MA, USA.
Michael A BrehmProgram in Molecular Medicine, Diabetes Center of Excellence, UMass Chan Medical School, Worcester, MA, USA Kenneth Rock.
Kenneth RockDepartment of Pathology, UMass Chan Medical School, Worcester, MA, USA.

Funding

Novel humanized mouse model developed from cord blood CD34 positive HSC and autologous iPS cell derived thymusR01AI132963 · NIAID · UNIV OF MASSACHUSETTS MED SCH WORCESTER · PI BREHM, MICHAEL ALLEN, MAEHR, RENE · 2017 to 2021
$4.4M
Live imaging of SARS-CoV-2 infection in novel humanized miceR24OD026440 · OD · UNIV OF MASSACHUSETTS MED SCH WORCESTER · PI BREHM, MICHAEL ALLEN, EMERSON, CHARLES P. · 2019 to 2022
$4.2M
Role of IRF2 in cancer immune evasion and immunotherapyR01CA247624 · NCI · UNIV OF MASSACHUSETTS MED SCH WORCESTER · PI ROCK, KENNETH L · 2020 to 2024
$2.9M
NCI NIH HHS R01 CA247624NIAID NIH HHS R01 AI132963NIH HHS R24 OD026440
6 · The paper itself

Abstract

Background: In order for cancers to progress, they must evade elimination by CD8 T cells or other immune mechanisms. CD8 T cells recognize and kill tumor cells that display immunogenic tumor peptides bound to MHC I molecules. One of the ways that cancers can escape such killing is by reducing expression of MHC I molecules, and loss of MHC I is frequently observed in tumors. There are multiple different mechanisms that can underly the loss of MHC I complexes on tumor and it is currently unclear whether there are particular mechanisms that occur frequently and, if so, in what types of cancers. Also of importance to know is whether the loss of MHC I is reversible and how such loss and/or its restoration would impact responses to immunotherapy. Here, we investigate these issues for loss of IRF1 and IRF2, which are transcription factors that drive expression of MHC I pathway genes and some killing mechanisms. Methods: Bioinformatics analyses of IRF2 and IRF2-dependent gene transcripts were performed for all human cancers in the TCGA RNAseq database. IRF2 protein-DNA-binding was analyzed in ChIPseq databases. CRISRPcas9 was used to knock out IRF1 and IRF2 genes in human and mouse melanoma cells and the resulting phenotypes were analyzed in vitro and in vivo. Results: Transcriptomic analysis revealed that IRF2 expression was reduced in a substantial subset of cases in almost all types of human cancers. When this occurred there was a corresponding reduction in the expression of IRF2-regulated genes that were needed for CD8 T cell recognition. To test cause and effect for these IRF2 correlations and the consequences of IRF2 loss, we gene-edited IRF2 in a patient-derived melanoma and a mouse melanoma. The IRF2 gene-edited melanomas had reduced expression of transcripts for genes in the MHC I pathway and decreased levels of MHC I complexes on the cell surface. Levels of Caspase 7, an IRF2 target gene involved in CD8 T cell killing of tumors, were also reduced. This loss of IRF2 caused both human and mouse melanomas to become resistant to immunotherapy with a checkpoint inhibitor. Importantly, these effects were reversible. Stimulation of the IRF2-deficient melanomas with interferon induced the expression of a functionally homologous transcription factor, IRF1, which then restored the MHC I pathway and responsiveness to CPI. Conclusions: Our study shows that a subset of cases within most types of cancers downregulates IRF2 and that this can allow cancers to escape immune control. This can cause resistance to checkpoint blockade immunotherapy and is reversible with currently available biologics.

Indexed as

antigen presentationimmunotherapyIRF2melanomaMHC I

Identifiers

PMID39281881
PMCPMC11398557

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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the OpenQuestion graph.