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Published on: July 20, 2019
Tumorous expression of NAC1 restrains antitumor immunity through the LDHA-mediated immune evasion
Yijie Ren1, Anil Kumar1, Jugal K Das1
1Microbial Pathogenesis and Immunology, Texas A&M University Health Sciences Center, Bryan, Texas, USA.
Background:
T cell-mediated antitumor immunity has a vital role in cancer prevention and treatment; however, the immune-suppressive tumor microenvironment (TME) constitutes a significant contributor to immune evasion that weakens antitumor immunity. Here, we explore the relationship between nucleus accumbens-associated protein-1 (NAC1), a nuclear factor of the BTB (broad-complex, Tramtrack, bric a brac)/POZ (Poxvirus, and Zinc finger) gene family, and the TME.
Methods:
Adoptive cell transfer (ACT) of mouse or human tumor antigen (Ag)-specific CD8+ cytotoxic T lymphocytes (CTLs) was tested in an immunocompetent or immunodeficient mouse model of melanoma with or without expression of NAC1. The effects of NAC1 expression on immune evasion in tumor cells were assessed in vitro and in vivo. CRISPR/Cas9, glycolysis analysis, retroviral transduction, quantitative real-time PCR, flow cytometric analysis, immunoblotting, database analyses were used to screen the downstream target and underlying mechanism of NAC1 in tumor cells.
Results:
Tumorous expression of NAC1 negatively impacts the CTL-mediated antitumor immunity via lactate dehydrogenase A (LDHA)-mediated suppressive TME. NAC1 positively regulated the expression of LDHA at the transcriptional level, which led to higher accumulation of lactic acid in the TME. This inhibited the cytokine production and induced exhaustion and apoptosis of CTLs, impairing their cell-killing ability. In the immunocompetent and immunodeficient mice, NAC1 depleted melanoma tumors grew significantly slower and had an elevated infiltration of tumor Ag-specific CTLs following ACT, compared with the control groups.
Conclusions:
Tumor expression of NAC1 contributes substantially to immune evasion through its regulatory role in LDHA expression and lactic acid production. Thus, therapeutic targeting of NAC1 warrants further exploration as a potential strategy to reinforce cancer immunotherapy, such as the ACT of CTLs.
Insights
Nucleus accumbens-associated protein-1 (NAC1) promotes immune evasion in melanoma by increasing lactic acid, hindering T cell attacks. Targeting NAC1 may enhance cancer immunotherapy effectiveness.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- T cell-mediated immunity is crucial for cancer control but is often suppressed by the tumor microenvironment (TME).
- Nucleus accumbens-associated protein-1 (NAC1) is a nuclear factor implicated in cellular processes.
- The role of NAC1 in the TME and its impact on antitumor immunity requires elucidation.
Purpose of the Study:
- To investigate the role of NAC1 in regulating the tumor microenvironment.
- To determine NAC1's influence on T cell-mediated antitumor immunity.
- To explore NAC1 as a potential therapeutic target in cancer immunotherapy.
Main Methods:
- Adoptive cell transfer (ACT) of T cells in melanoma mouse models.
- In vitro and in vivo assessment of NAC1's effect on immune evasion.
- Utilized CRISPR/Cas9, glycolysis analysis, PCR, flow cytometry, and immunoblotting to identify NAC1's mechanism.
Main Results:
- NAC1 expression in tumors suppresses CD8+ cytotoxic T lymphocyte (CTL) immunity by promoting a suppressive TME.
- NAC1 upregulates lactate dehydrogenase A (LDHA) transcriptionally, increasing lactic acid.
- NAC1-depleted tumors showed slower growth and enhanced CTL infiltration after ACT.
Conclusions:
- Tumor-expressed NAC1 drives immune evasion via LDHA-mediated lactic acid production.
- Targeting NAC1 is a promising strategy to enhance cancer immunotherapies like ACT.
- NAC1 modulation could restore CTL function and improve antitumor responses.
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