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Published on: June 13, 2019
KDM1A Promotes Immunosuppression in Hepatocellular Carcinoma by Regulating PD-L1 through Demethylating MEF2D
1Department of Gastrointestinal Endoscopy Room, Jingmen No. 1 People's Hospital, Hubei, China.
Background:
Immune checkpoint inhibitor therapy targeting antiprogrammed cell death-1 (anti-PD-1) or its ligand (anti-PD-L1) is effective in the treatment of some hepatocellular carcinomas (HCC). Hence, further identification of biological targets related to PD-L1 regulation in HCC is beneficial to improve the clinical efficacy of immunotherapy. Some HCC cells express lysine-specific demethylase 1A (KDM1A), which is implicated in the reduced survival time of patients. Here, we studied whether the level of PD-L1 and the immunosuppression are regulated by KDM1A and its miRNA in HCC cells.
Methods:
In the present study, we studied clinical data from The Cancer Genome Atlas (TCGA) database. We performed qPCR and western blotting assays to measure the expression level of genes of interest. PD-L1 expression was also analyzed by FACS. Clustered regularly interspaced short palindromic repeats (CRISPR)/Cas9 was used to generate gene knockout cells to investigate the relationships of genes of interest. We also developed a reporter gene assay (RGA) to explore the changes in T cell-induced antitumor immunity relative to PD-L1 expression in HCC cells. The binding between proteins and promoters or miRNAs and their target genes was explored by luciferase reporter assays.
Results:
The results showed that PD-L1 and KDM1A were increased in HCC patients and cells, and KDM1A promoted the expression of PD-L1 in HCC cells. Our findings showed that the enhancement of PD-L1 expression was not attributed to mitochondrial dysfunction caused by increases in KDM1A in HCC cells. Furthermore, we observed a lower level of MEF2D methylation in HCC cells than in normal human liver cells. Demethylated MEF2D could bind to the promoter of PD-L1 and activate its expression, while KDM1A interacted with MEF2D and acted as a demethylase to reduce its methylation. Moreover, a new miRNA, miR-329-3p, targeting KDM1A was found to regulate the PD-L1 expression profile in HCC cells. In the xenograft model, the tumors treated with miR-329-3p showed growth inhibition.
Conclusions:
Mechanistically, miR-329-3p inhibits tumor cellular immunosuppression and reinforces the response of tumor cells to T cell-induced cytotoxic effect by targeting KDM1A mRNA and downregulating its expression, which contributed to MEF2D demethylation and activation of PD-L1 expression.
Insights
Lysine-specific demethylase 1A (KDM1A) promotes PD-L1 expression in hepatocellular carcinoma (HCC) by demethylating MEF2D. MiR-329-3p inhibits KDM1A, reducing PD-L1 and enhancing anti-tumor immunity in HCC.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Immune checkpoint inhibitors (ICIs) targeting PD-1/PD-L1 are effective for some hepatocellular carcinomas (HCC).
- Identifying PD-L1 regulatory targets in HCC is crucial for improving immunotherapy efficacy.
- Lysine-specific demethylase 1A (KDM1A) is linked to poor survival in HCC.
Purpose of the Study:
- To investigate the role of KDM1A and its associated microRNA (miRNA) in regulating PD-L1 expression and immunosuppression in HCC cells.
- To elucidate the molecular mechanisms underlying KDM1A-mediated PD-L1 regulation in HCC.
Main Methods:
- Analysis of The Cancer Genome Atlas (TCGA) clinical data.
- Quantitative PCR (qPCR), Western blotting, and Flow Cytometry (FACS) for gene and protein expression analysis.
- CRISPR/Cas9 gene editing, reporter gene assays (RGAs), and luciferase reporter assays to study gene interactions and functional effects.
Main Results:
- KDM1A and PD-L1 expression are elevated in HCC patients and cells, with KDM1A promoting PD-L1 expression.
- KDM1A demethylates MEF2D, which then binds to the PD-L1 promoter and activates its expression.
- A novel miRNA, miR-329-3p, targets KDM1A, downregulating PD-L1 and inhibiting tumor growth in xenograft models.
Conclusions:
- MiR-329-3p inhibits tumor immunosuppression by targeting KDM1A, leading to MEF2D demethylation and PD-L1 activation.
- This mechanism enhances tumor cell susceptibility to T cell-mediated cytotoxicity.
- Targeting the miR-329-3p/KDM1A axis offers a potential strategy to improve HCC immunotherapy outcomes.
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