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Native Chromatin Immunoprecipitation Using Murine Brain Tumor Neurospheres
Published on: January 29, 2018
Druggable epigenetic suppression of interferon-induced chemokine expression linked to MYCN amplification in
Johanna A Seier1, Julia Reinhardt1, Kritika Saraf1
1Institute of Experimental Oncology, Medical Faculty, University Hospital Bonn, Bonn, Germany.
Background:
Amplification of the MYCN oncogene is a molecular hallmark of aggressive neuroblastoma (NB), a childhood cancer of the sympathetic nervous system. There is evidence that MYCN promotes a non-inflamed and T-cell infiltration-poor ('cold') tumor microenvironment (TME) by suppressing interferon signaling. This may explain, at least in part, why patients with NB seem to have little benefit from single-agent immune checkpoint blockade (ICB) therapy. Targeting MYCN or its effectors could be a strategy to convert a cold TME into a 'hot' (inflamed) TME and improve the efficacy of ICB therapy.
Methods:
NB transcriptome analyses were used to identify epigenetic drivers of a T-cell infiltration-poor TME. Biological and molecular responses of NB cells to epigenetic drugs and interferon (IFN)-γ exposure were assessed by proliferation assays, immunoblotting, ELISA, qRT-PCR, RNA-seq and ChIP-qPCR as well as co-culture assays with T cells.
Results:
We identified H3K9 euchromatic histone-lysine methyltransferases EHMT2 and EHMT1, also known as G9a and GLP, as epigenetic effectors of the MYCN-driven malignant phenotype and repressors of IFN-γ transcriptional responses in NB cells. EHMT inhibitors enhanced IFN-γ-induced expression of the Th1-type chemokines CXCL9 and CXCL10, key factors of T-cell recruitment into the TME. In MYCN-amplified NB cells, co-inhibition of EZH2 (enhancer of zeste homologue 2), a H3K27 histone methyltransferase cooperating with EHMTs, was needed for strong transcriptional responses to IFN-γ, in line with histone mark changes at CXCL9 and CXCL10 chemokine gene loci. EHMT and EZH2 inhibitor response gene signatures from NB cells were established as surrogate measures and revealed high EHMT and EZH2 activity in MYCN-amplified high-risk NBs with a cold immune phenotype.
Conclusion:
Our results delineate a strategy for targeted epigenetic immunomodulation of high-risk NBs, whereby EHMT inhibitors alone or in combination with EZH2 inhibitors (in particular, MYCN-amplified NBs) could promote a T-cell-infiltrated TME via enhanced Th1-type chemokine expression.
Insights
Targeting epigenetic regulators EHMT and EZH2 can convert cold neuroblastoma tumors into hot ones. This strategy enhances T-cell infiltration, potentially improving immune checkpoint blockade therapy efficacy for high-risk neuroblastoma.
Area of Science:
- Oncology
- Immunology
- Epigenetics
Background:
- MYCN oncogene amplification drives aggressive neuroblastoma (NB) and a 'cold' tumor microenvironment (TME) by suppressing interferon signaling.
- This 'cold' TME limits the effectiveness of single-agent immune checkpoint blockade (ICB) in NB patients.
- Targeting MYCN or its effectors offers a potential strategy to enhance ICB therapy by 'heating' the TME.
Purpose of the Study:
- Identify epigenetic drivers of the T-cell-poor TME in neuroblastoma.
- Investigate the role of EHMT and EZH2 in regulating interferon signaling and T-cell recruitment.
- Evaluate the potential of epigenetic inhibitors to modulate the NB TME for improved immunotherapy.
Main Methods:
- Neuroblastoma transcriptome analysis to identify epigenetic regulators.
- Assessed biological and molecular responses to epigenetic drugs and interferon-gamma (IFN-γ).
- Utilized proliferation assays, immunoblotting, ELISA, qRT-PCR, RNA-seq, ChIP-qPCR, and co-culture assays.
Main Results:
- EHMT2/EHMT1 (G9a/GLP) were identified as MYCN-driven repressors of IFN-γ responses in NB.
- EHMT inhibitors increased IFN-γ-induced CXCL9/CXCL10 chemokine expression, promoting T-cell recruitment.
- Co-inhibition of EZH2 was necessary for robust IFN-γ responses in MYCN-amplified NB, correlating with histone mark changes.
- High EHMT/EZH2 activity was observed in MYCN-amplified, high-risk NB with a cold immune phenotype.
Conclusions:
- Epigenetic modulation via EHMT inhibitors, alone or with EZH2 inhibitors, can promote a T-cell-infiltrated TME in high-risk NB.
- This strategy enhances Th1-type chemokine expression, potentially sensitizing tumors to immunotherapy.
- Targeted epigenetic immunomodulation presents a promising approach for treating aggressive neuroblastoma.
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