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NTMT1 (METTL11A) promotes MYC-dependent proliferation and downstream HLA-A suppression in cervical cancer
Jinling Zhang1, Chen Chen2, Huibin Song3
1Department of Gynecology, Shenzhen People's Hospital (The Second Clinical Medical College, Jinan University; The First Affiliated Hospital, Southern University of Science and Technology), Shenzhen, Guangdong, China.
Background:
Identifying upstream molecular regulators linking tumor proliferation with immune-related alterations remains an important challenge in cancer therapy. NTMT1 (METTL11A), a protein N-terminal methyltransferase, has been implicated in tumorigenesis; however, its role in coordinating tumor-immune interaction is poorly understood.
Methods:
We performed integrative single-cell RNA sequencing (GSE208653) and spatial transcriptomics (GSE208654) analyses to characterize NTMT1 expression and function in cervical cancer. Spatial deconvolution and microenvironmental co-localization analyses were used to define context-specific effects. Functional validation was conducted using RT-qPCR, Western blotting, multiplex immunofluorescence, and flow cytometry-based assays.
Results:
NTMT1 exhibited heterogeneous expression across epithelial and immune cell populations, with enrichment in squamous cell carcinoma. Spatial transcriptomics revealed that NTMT1-positive regions were associated with altered immune composition, including reduced macrophage and increased NK/T cell infiltration. In epithelial-enriched regions, NTMT1 expression correlated with activation of cell cycle pathways, including MYC, E2F1, CDK1, and CCNB1. Functional experiments demonstrated that NTMT1 promotes cell cycle progression via MYC upregulation. In epithelial-NK/T co-localization niches, NTMT1 was associated with modulation of antigen presentation pathways and suppression of HLA-A expression. Functionally, NTMT1 overexpression reduced IFN-γ production by CD8+ T cells under the co-culture conditions used in this study, which was partially restored by HLA-A re-expression.
Conclusion:
NTMT1 was identified as a candidate regulator associated with MYC activation and HLA-A suppression. Although the precise molecular mechanism remains to be elucidated, functional experiments demonstrated that NTMT1 overexpression was accompanied by increased MYC expression, reduced HLA-A expression, enhanced cell-cycle progression, and impaired CD8+ T-cell function. These findings identify NTMT1 as a candidate regulatory node associated with MYC activation and downstream HLA-A suppression, warranting further mechanistic and in-vivo investigation, highlighting NTMT1 as a promising candidate for future therapeutic investigation. Further in vivo studies will be required to determine its suitability as a target for combination immunotherapy.
Insights
The protein N-terminal methyltransferase 1 (NTMT1) promotes cervical cancer cell cycle progression via MYC activation and suppresses CD8+ T-cell function by reducing HLA-A expression, suggesting NTMT1 as a therapeutic target.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Identifying molecular regulators linking tumor proliferation and immune alterations is crucial for cancer therapy.
- The role of protein N-terminal methyltransferase 1 (NTMT1) in coordinating tumor-immune interactions is poorly understood.
Purpose of the Study:
- To characterize NTMT1 expression and function in cervical cancer.
- To investigate NTMT1's role in regulating tumor cell cycle and immune cell activity.
Main Methods:
- Integrative single-cell RNA sequencing and spatial transcriptomics.
- Spatial deconvolution and microenvironmental co-localization analyses.
- Functional validation using RT-qPCR, Western blotting, multiplex immunofluorescence, and flow cytometry.
Main Results:
- NTMT1 expression is heterogeneous in cervical cancer, enriched in squamous cell carcinoma, and associated with altered immune cell composition.
- NTMT1 promotes cell cycle progression via MYC upregulation in epithelial cells.
- NTMT1 suppresses antigen presentation and HLA-A expression, impairing CD8+ T-cell function.
Conclusions:
- NTMT1 acts as a regulatory node linking MYC activation and HLA-A suppression in cervical cancer.
- NTMT1 overexpression enhances cell-cycle progression and impairs anti-tumor immunity.
- NTMT1 is a promising candidate for further investigation as a therapeutic target in cancer immunotherapy.
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