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DNA hypomethylation promotes transposable element expression and activation of immune signaling in renal cell cancer
Aguirre A. de Cubas, William Dunker, Andrew Zaninovich, Rachel A. Hongo, Anuj Bhatia, Anshuman Panda, Kathryn E. Beckermann, Gyan Bhanot, Shridar Ganesan, John Karijolich, W. Kimryn Rathmell
Aguirre A. de Cubas, William Dunker, Andrew Zaninovich, Rachel A. Hongo, Anuj Bhatia, Anshuman Panda, Kathryn E. Beckermann, Gyan Bhanot, Shridar Ganesan, John Karijolich, W. Kimryn Rathmell
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Research Article Immunology Oncology

DNA hypomethylation promotes transposable element expression and activation of immune signaling in renal cell cancer

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Abstract

Recently, we reported that expression of endogenous retroviruses (ERVs) is associated with response to immune checkpoint blockade (ICB) in renal cell carcinoma (RCC). We show that decitabine, a DNA hypomethylating agent, activates transposable element (TE) expression (LINE1 and ERVs ERV3-2 and ERV4700) and antiviral signaling to potentially enhance response to ICB in kidney cancer cell lines and primary cells. KO of RIGI and MDA5 dsRNA sensors attenuated activation of antiviral signaling associated with DNA hypomethylation, and RIGI and MDA5 IPs showed increased ERV binding with decitabine treatment. Bioinformatic analyses showed the decitabine-induced signature could be associated with increased immune infiltration and response to ICB. Cytokine secretion induced by decitabine could modestly improve T cell activation and robustly enhanced T cell migration. In a small retrospective cohort of metastatic clear cell RCC (ccRCC) patients treated with anti-PD1/PDL1 blockade, activation of some antiviral genes was significantly higher in responders. Thus, we identified a potential strategy to induce TE expression through inhibition of DNA methylation in modulating T cell action via regulation of the innate antiviral pathway.

Authors

Aguirre A. de Cubas, William Dunker, Andrew Zaninovich, Rachel A. Hongo, Anuj Bhatia, Anshuman Panda, Kathryn E. Beckermann, Gyan Bhanot, Shridar Ganesan, John Karijolich, W. Kimryn Rathmell

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Figure 5

MDA5 and RIGI bind ERVs induced by DNA hypomethylation.

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MDA5 and RIGI bind ERVs induced by DNA hypomethylation.
(A) Verification...
(A) Verification of Doxyline (DOX) inducible MDA5-FLAG and RIGI-FLAG proteins in 786-0 cell lines by immunoblot analysis. Indicated cell lines were treated with and without DOX and decitabine. Addition of DOX induces expression of MDA5-FLAG or RIGI-FLAG constructs. MDA5-FLAG and RIGI-FLAG protein was detected using anti–FLAG M2 antibody. β-Actin was used as a loading control. (B–E) Enrichment of ERVs (ERVE, ERVFC1, ERVFC2, ERV3-2, and ERV4700) bound by MDA5 (B and C) and RIGI (D and E) was assessed by RIP. IP of MDA5-FLAG and RIGI-FLAG was performed using anti–FLAG M2 antibody. ERV expression was assessed by qPCR. Values shown as fold-enrichment over input of the 100 nM decitabine-treatment group, normalized to the 0 nM decitabine-treatment group. Black dot and line indicate mean ± SD (n = 3). Significance (100 nM fold-enrichment MDA5/RIGI-FLAG IP versus 0 nM fold-enrichment MDA5/RIGI-FLAG IP) assessed by 2-tailed t test, and P values were adjusted via Holm-Bonferroni correction. *P < 0.05.

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