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EZH2-associated tumor malignancy: A prominent target for cancer treatment
Maryam Sabour-Takanlou1, Leila Sabour-Takanlou1, Cigir Biray-Avci1
1Department of Medical Biology, Faculty of Medicine, Ege University, Izmir, Turkey.
Abstract:
The discussion in this review centers around the significant relationships between EZH2 and the initiation, progression, metastasis, metabolism, drug resistance, and immune regulation of cancer. Polycomb group (PcG) proteins, which encompass two primary Polycomb repressor complexes (PRC1 and PRC2), have been categorized. PRC2 consists mainly of four subunits, namely EZH2, EED, SUZ12, and RbAp46/48. As the crucial catalytic component within the PRC2 complex, EZH2 plays a pivotal role in controlling a wide range of biological processes. Overexpression/mutations of EZH2 have been detected in a wide variety of tumors. Several mechanisms of EZH regulation have been identified, including regulation EZH2 mRNA by miRNAs, LncRNAs, accessibility to DNA via DNA-binding proteins, post-translational modifications, and transcriptional regulation. EZH2 signaling triggers cancer progression and may intervene with anti-tumor immunity; therefore it has charmed attention as an effective therapeutic target in cancer therapy. Numerous nucleic acid-based therapies have been used in the modification of EZH2. In addition to gene therapy approaches, pharmaceutical compounds can be used to target the EZH2 signaling pathway in the treatment of cancer. EZH2-associated tumor cells and immune cells enhance the effects of the immune response in a variety of human malignancies. The combination of epigenetic modifying agents, such as anti-EZH2 compounds with immunotherapy, could potentially be efficacious even in the context of immunosuppressive tumors. Summary, understanding the mechanisms underlying resistance to EZH2 inhibitors may facilitate the development of novel drugs to prevent or treat relapse in treated patients.
Insights
Enhancer of Zeste Homolog 2 (EZH2) is crucial in cancer initiation, progression, and immune evasion. Targeting EZH2 offers a promising therapeutic strategy, especially when combined with immunotherapy for enhanced anti-tumor effects.
Area of Science:
- Epigenetics and Cancer Biology
- Molecular Oncology
- Immunotherapy
Background:
- Polycomb group (PcG) proteins, including PRC2, regulate gene expression.
- EZH2 is the catalytic subunit of PRC2, critical for numerous biological processes.
- EZH2 dysregulation (overexpression/mutation) is implicated in various cancers.
Purpose of the Study:
- To review the multifaceted roles of EZH2 in cancer.
- To explore EZH2 as a therapeutic target in oncology.
- To discuss EZH2 regulation mechanisms and therapeutic strategies.
Main Methods:
- Review of existing literature on EZH2 in cancer.
- Analysis of EZH2 regulation mechanisms (miRNA, LncRNA, PTMs, etc.).
- Examination of therapeutic approaches targeting EZH2 (nucleic acid-based, pharmaceuticals, combination therapies).
Main Results:
- EZH2 influences cancer initiation, progression, metastasis, metabolism, drug resistance, and immune regulation.
- Multiple regulatory mechanisms control EZH2 expression and function.
- EZH2 targeting demonstrates potential in cancer therapy, including combination with immunotherapy.
Conclusions:
- EZH2 is a significant driver of tumorigenesis and immune modulation.
- Targeting EZH2 pathways, especially in combination with immunotherapy, shows promise for treating various malignancies.
- Understanding resistance mechanisms to EZH2 inhibitors is vital for developing next-generation therapies.
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