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EZH2-Inhibited MicroRNA-454-3p Promotes M2 Macrophage Polarization in Glioma
Bin Qi1, Cheng Yang1, Zhanpeng Zhu1
1Department of Neurosurgery, The First Hospital of Jilin University, Changchun, China.
Abstract:
Glioma is a primary intracranial tumor with high incidence and mortality. The oncogenic role of EZH2 has been reported in glioma. EZH2 inhibited microRNA-454-3p (miR-454-3p) by binding to its promoter in chondrosarcoma cells. Therefore, our study aimed to identify whether EZH2 regulated M2 macrophage polarization in glioma via miR-454-3p. Clinical samples of different grades of glioma and glioma cells were collected and immunohistochemistry and RT-qPCR demonstrated that EZH2 was highly expressed in glioma tissues. Expression of EZH2 was positively correlated with the degree of M2 macrophage polarization in glioma tissues. EZH2 was silenced by lentivirus in glioma cells, which were subsequently co-cultured with macrophages to evaluate its effect on macrophage polarization. miR-454-3p, a down-regulated miR in glioma, was found to be increased after silencing of EZH2. Furthermore, MethPrimer analysis showed that EZH2 silencing inhibited the DNA methylation level of miR-454-3p. Additionally, MS-PCR, dual-luciferase reporter, RIP and RNA pull down assays revealed that miR-454-3p promoted PTEN expression by inhibiting m6A modification through binding to the enzyme YTHDF2. Either inhibition of miR-454-3p or PTEN resulted in promotion of M2 macrophage polarization. Collectively, histone methyltransferase EZH2 inhibited miR-454-3p through methylation modification and promoted m6A modification of PTEN to induce glioma M2 macrophage polarization.
Insights
Enhancer of zeste homolog 2 (EZH2) promotes glioma M2 macrophage polarization by inhibiting microRNA-454-3p (miR-454-3p) and promoting PTEN methylation. This study reveals a novel regulatory pathway in glioma progression.
Area of Science:
- Neuro-oncology
- Immunology
- Molecular Biology
Background:
- Glioma is a prevalent and lethal primary brain tumor.
- EZH2 is implicated in glioma oncogenesis.
- EZH2's role in regulating M2 macrophage polarization via miR-454-3p in glioma is unexplored.
Purpose of the Study:
- To investigate the regulatory mechanism of EZH2 on M2 macrophage polarization in glioma through miR-454-3p.
- To elucidate the downstream targets and molecular pathways involved.
Main Methods:
- Analysis of clinical glioma samples (immunohistochemistry, RT-qPCR).
- EZH2 silencing in glioma cells and co-culture with macrophages.
- Detection of miR-454-3p expression and DNA methylation levels.
- Investigating the interaction between miR-454-3p, PTEN, and YTHDF2 (MS-PCR, dual-luciferase reporter, RIP, RNA pull down assays).
Main Results:
- EZH2 is highly expressed in glioma and correlates with M2 macrophage polarization.
- EZH2 silencing increases miR-454-3p expression and reduces its promoter methylation.
- miR-454-3p promotes PTEN expression by inhibiting YTHDF2-mediated m 6 A modification.
- Inhibition of miR-454-3p or PTEN promotes M2 macrophage polarization.
Conclusions:
- Histone methyltransferase EZH2 inhibits miR-454-3p via methylation.
- EZH2 promotes PTEN m 6 A modification, thereby inducing M2 macrophage polarization in glioma.
- This pathway highlights a potential therapeutic target for glioma treatment.
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