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Published on: July 20, 2019
ZNF296 Drives Immune Evasion in Epithelial Cancers by Repressing Immune Stimulatory Genes
Hefei Wang1,2, Fangting Zhao1, Yao Li1
1School of Basic Medical Sciences, State Key Laboratory of Molecular Oncology, Tsinghua University, Beijing, China.
Abstract:
Resistance to immune-mediated destruction is a fundamental hallmark of cancer. Although several mechanisms have been identified that facilitate immune evasion, the transcriptional programs that orchestrate this process remain poorly understood. In this study, through a genome-wide CRISPR activation screen in human cancer cells subjected to NK cell-mediated killing, we identified ZNF296, a transcription factor highly expressed in epithelial cancers, as a key driver of tumor resistance to both NK and cytotoxic T-cell-mediated immunity. In mouse models, inhibition of ZNF296 significantly enhanced both NK and T-cell-mediated antitumor immunity, leading to a marked reduction in metastasis and increased infiltration of immune cells into the tumor microenvironment. Mechanistically, ZNF296 induced strong transcriptional repression of IFN-stimulated genes and key immunostimulatory ligands critical for NK and T-cell-mediated cytotoxicity. At the molecular level, ZNF296 directly interacted with and recruited the NuRD chromatin remodeling and deacetylase complex to the promoters of its target genes to suppress expression. Notably, treatment with low-dose romidepsin, an FDA-approved inhibitor targeting histone deacetylase 1, a core component of the NuRD complex, effectively restored NK and T-cell-mediated killing in cancer cells with high ZNF296 expression. Collectively, these findings establish ZNF296 as a key regulator of immune evasion, driving resistance to both NK and T-cell-mediated antitumor immunity, and highlight its potential as a therapeutic target to overcome immune resistance in epithelial cancers.
Significance:
ZNF296 is a transcriptional regulator that enables cancer cells to evade immune surveillance, offering possibilities for developing treatments that enhance the ability of the immune system to eliminate cancer cells.
Insights
A newly identified transcription factor, ZNF296, helps tumors evade immune attack. Inhibiting ZNF296 boosts natural killer (NK) and T-cell responses, offering a new strategy against epithelial cancers.
Area of Science:
- Immunology
- Cancer Biology
- Molecular Biology
Background:
- Cancer cells resist immune destruction through various evasion mechanisms.
- Transcriptional programs driving immune evasion are not fully understood.
- Identifying key regulators of tumor immune evasion is crucial for therapeutic development.
Purpose of the Study:
- To identify transcriptional regulators involved in cancer cell resistance to immune-mediated killing.
- To investigate the role of ZNF296 in tumor immunity and its therapeutic potential.
Main Methods:
- Genome-wide CRISPR activation screen in human cancer cells against NK cell killing.
- In vivo studies using mouse models to assess ZNF296 inhibition effects.
- Mechanistic studies involving chromatin immunoprecipitation and molecular interaction assays.
- Treatment with romidepsin, a histone deacetylase inhibitor.
Main Results:
- ZNF296 was identified as a key driver of resistance to NK and cytotoxic T-cell immunity.
- ZNF296 inhibition enhanced anti-tumor immunity, reduced metastasis, and increased immune cell infiltration in mouse models.
- ZNF296 represses IFN-stimulated genes and immunostimulatory ligands by recruiting the NuRD complex.
- Romidepsin treatment restored immune cell-mediated killing in ZNF296-high cancer cells.
Conclusions:
- ZNF296 is a critical regulator of immune evasion in epithelial cancers.
- Targeting ZNF296 enhances anti-tumor immunity mediated by NK and T-cells.
- ZNF296 presents a promising therapeutic target for overcoming immune resistance in cancer.
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