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MT1 and MT2 melatonin receptors play opposite roles in brain cancer progression
G S Kinker1, L H Ostrowski2, P A C Ribeiro3
1Department of Physiology, Institute of Bioscience, University of Sao Paulo, Sao Paulo, Brazil. gabriela.kinker@gmail.com.
Abstract:
Primary brain tumors remain among the deadliest of all cancers. Glioma grade IV (glioblastoma), the most common and malignant type of brain cancer, is associated with a 5-year survival rate of < 5%. Melatonin has been widely reported as an anticancer molecule, and we have recently demonstrated that the ability of gliomas to synthesize and accumulate this indolamine in the surrounding microenvironment negatively correlates with tumor malignancy. However, our understanding of the specific effects mediated through the activation of melatonin membrane receptors remains limited. Thus, here we investigated the specific roles of MT1 and MT2 in gliomas and medulloblastomas. Using the MT2 antagonist DH97, we showed that MT1 activation has a negative impact on the proliferation of human glioma and medulloblastoma cell lines, while MT2 activation has an opposite effect. Accordingly, gliomas have a decreased mRNA expression of MT1 (also known as MTNR1A) and an increased mRNA expression of MT2 (also known as MTNR1B) compared to the normal brain cortex. The MT1/MT2 expression ratio negatively correlates with the expression of cell cycle-related genes and is a positive prognostic factor in gliomas. Notably, we showed that functional selective drugs that simultaneously activate MT1 and inhibit MT2 exert robust anti-tumor effects in vitro and in vivo, downregulating the expression of cell cycle and energy metabolism genes in glioma stem-like cells. Overall, we provided the first evidence regarding the differential roles of MT1 and MT2 in brain tumor progression, highlighting their relevance as druggable targets. KEY MESSAGES: • MT1 impairs while MT2 promotes the proliferation of glioma and medulloblastoma cell lines. • Gliomas have a decreased expression of MT1 and an increased expression of MT2 compared to normal brain cortex. • Tumors with a high MT1/MT2 expression ratio have significantly better survival rates. • Functional selective drugs that simultaneously activate MT1 and inhibit MT2 downregulate the expression of cell cycle and energy metabolism genes in glioma stem-like cells and exert robust anti-tumor effects in vivo.
Insights
Melatonin receptors MT1 and MT2 have opposing roles in brain tumor growth. Activating MT1 inhibits, while activating MT2 promotes, glioma and medulloblastoma proliferation, suggesting new therapeutic targets.
Area of Science:
- Neuro-oncology
- Molecular biology
- Cancer research
Background:
- Primary brain tumors, particularly glioblastoma (glioma grade IV), have extremely poor prognoses.
- Melatonin's anticancer properties are known, but its specific membrane receptor roles (MT1 and MT2) in brain tumors are unclear.
- Glioma malignancy correlates inversely with endogenous melatonin synthesis and accumulation.
Purpose of the Study:
- To elucidate the distinct roles of melatonin receptors MT1 and MT2 in glioma and medulloblastoma.
- To investigate the therapeutic potential of targeting MT1 and MT2 signaling pathways.
Main Methods:
- Utilized MT2 antagonist DH97 to assess MT1 activation effects on glioma and medulloblastoma cell lines.
- Analyzed MT1 (MTNR1A) and MT2 (MTNR1B) mRNA expression in gliomas versus normal brain cortex.
- Correlated MT1/MT2 expression ratios with cell cycle gene expression and patient survival.
- Evaluated in vitro and in vivo anti-tumor effects of dual MT1-activating and MT2-inhibiting drugs on glioma stem-like cells.
Main Results:
- MT1 activation inhibited proliferation of human glioma and medulloblastoma cell lines, whereas MT2 activation promoted it.
- Gliomas exhibited reduced MT1 and increased MT2 mRNA expression compared to normal brain.
- A higher MT1/MT2 expression ratio correlated with reduced cell cycle gene expression and improved glioma prognosis.
- Selective drugs targeting MT1 (activation) and MT2 (inhibition) demonstrated potent anti-tumor activity, downregulating key genes.
Conclusions:
- MT1 and MT2 play differential, opposing roles in brain tumor progression.
- The MT1/MT2 balance is a critical factor in glioma malignancy and patient survival.
- Targeting MT1 and MT2 with functional selective drugs represents a promising therapeutic strategy for brain tumors.
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