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Inhibition of neuroblastoma cell growth by TREX1-mutated human lymphocytes
A Pulliero1, B Marengo, C Domenicotti
1Department of Health Sciences, University of Genoa, I-16132 Genoa, Italy.
Abstract:
T lymphocytes play a major role in counteracting cancer occurrence and development. Immune therapies against cancer are focused on eliciting a cytotoxic T cell response. This anticancer activity is related to a variety of mechanisms including the activation of cytokines and proapoptotic mediators. Interferon α is an established inhibitor of cancer cell growth. A clinical situation involving the coexistence of high interferon α levels and lymphocyte activation is the Aicardi-Goutières syndrome, a progressive encephalopathy arising usually during the first year of life characterized by intracranial basal ganglia calcifications, leukodystrophy and microcephaly. Aicardi-Goutières syndrome 1 mutation silences the TREX1 gene, a major endogenous nuclease. The in vitro study presented herein evaluates the efficacy of the TREX1 mutation in potentiating the anticancer properties of T cells. A TREX1-mutated lymphocyte cell line was derived from an Aicardi-Goutières syndrome patient and co-cultured with neuroblastoma cells and vascular endothelial cells in the presence of interferon α. TREX1-mutated lymphocytes exerted marked inhibitory action on neuroblastoma cell growth. Cathepsin D was recognized by qPCR as the main mediator produced by TREX1-mutated lymphocytes involved in the inhibition of neuroblastoma cell growth. These effects were enhanced in the presence of interferon α. Similar inhibitory effects in cell growth were exerted by TREX1-mutated lymphocytes towards vascular endothelial cell angiogenesis as evaluated on Matrigel. The results obtained provide evidence that mutations of the TREX1 gene increase the capability of T-lymphocytes to inhibit growth of neoplastic neuronal cells and related angiogenesis.
Insights
TREX1 gene mutations enhance T-lymphocyte anticancer activity against neuroblastoma and angiogenesis. This effect is amplified by interferon-alpha, suggesting new therapeutic strategies for cancer treatment.
Area of Science:
- Immunology
- Oncology
- Genetics
Background:
- T lymphocytes are crucial for anti-cancer immunity, utilizing mechanisms like cytokine activation and apoptosis induction.
- Interferon-alpha (IFNα) inhibits cancer cell growth.
- Aicardi-Goutières syndrome involves high IFNα and lymphocyte activation due to TREX1 gene mutations.
Purpose of the Study:
- To investigate the efficacy of TREX1 mutations in enhancing T-lymphocyte anti-cancer properties.
- To evaluate the impact of TREX1-mutated lymphocytes on neuroblastoma and endothelial cell growth in vitro.
- To identify mediators involved in the anti-cancer effects of TREX1-mutated lymphocytes.
Main Methods:
- Derived a TREX1-mutated lymphocyte cell line from an Aicardi-Goutières syndrome patient.
- Co-cultured these lymphocytes with neuroblastoma and vascular endothelial cells.
- Assessed cell growth inhibition and angiogenesis using qPCR and Matrigel assays, with and without interferon-alpha.
Main Results:
- TREX1-mutated lymphocytes significantly inhibited neuroblastoma cell growth.
- Cathepsin D was identified as a key mediator of this inhibition.
- TREX1-mutated lymphocytes also inhibited vascular endothelial cell angiogenesis.
- Interferon-alpha enhanced these inhibitory effects.
Conclusions:
- TREX1 gene mutations potentiate T-lymphocyte-mediated inhibition of neoplastic neuronal cell growth.
- TREX1 mutations also suppress tumor-related angiogenesis.
- These findings suggest that TREX1 mutations may offer novel avenues for cancer immunotherapy.

