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Published on: January 11, 2019
TRIM25: A Global Player of Cell Death Pathways and Promising Target of Tumor-Sensitizing Therapies
Wolfgang Eberhardt1, Usman Nasrullah1, Josef Pfeilschifter1
1Institute of General Pharmacology and Toxicology, Goethe University Frankfurt, 60590 Frankfurt, Germany.
Abstract:
Therapy resistance still constitutes a common hurdle in the treatment of many human cancers and is a major reason for treatment failure and patient relapse, concomitantly with a dismal prognosis. In addition to "intrinsic resistance", e.g., acquired by random mutations, cancer cells typically escape from certain treatments ("acquired resistance") by a large variety of means, including suppression of apoptosis and other cell death pathways via upregulation of anti-apoptotic factors or through inhibition of tumor-suppressive proteins. Therefore, ideally, the tumor-cell-restricted induction of apoptosis is still considered a promising avenue for the development of novel, tumor (re)sensitizing therapies. A growing body of evidence has highlighted the multifaceted role of tripartite motif 25 (TRIM25) in controlling different aspects of tumorigenesis, including chemotherapeutic drug resistance. Accordingly, overexpression of TRIM25 is observed in many tumors and frequently correlates with a poor patient survival. In addition to its originally described function in antiviral innate immune response, TRIM25 can play critical yet context-dependent roles in apoptotic- and non-apoptotic-regulated cell death pathways, including pyroposis, necroptosis, ferroptosis, and autophagy. The review summarizes current knowledge of molecular mechanisms by which TRIM25 can interfere with different cell death modalities and thereby affect the success of currently used chemotherapeutics. A better understanding of the complex repertoire of cell death modulatory effects by TRIM25 is an essential prerequisite for validating TRIM25 as a potential target for future anticancer therapy to surmount the high failure rate of currently used chemotherapies.
Insights
Therapy resistance in cancer is a major challenge. Tripartite motif 25 (TRIM25) influences cancer cell death, impacting treatment success and offering a potential target for novel therapies.
Area of Science:
- Oncology
- Molecular Biology
- Immunology
Background:
- Therapy resistance is a significant obstacle in cancer treatment, leading to relapse and poor prognosis.
- Cancer cells develop resistance through mechanisms like apoptosis suppression and inhibiting tumor suppressors.
- Inducing tumor-cell-specific apoptosis is a promising strategy for developing new cancer therapies.
Purpose of the Study:
- To review the role of tripartite motif 25 (TRIM25) in cancer development and therapy resistance.
- To summarize the molecular mechanisms by which TRIM25 influences various cell death pathways.
- To evaluate TRIM25 as a potential therapeutic target for overcoming chemotherapy resistance.
Main Methods:
- Literature review of current knowledge on TRIM25 function in cancer.
- Analysis of TRIM25's involvement in apoptosis, pyroptosis, necroptosis, ferroptosis, and autophagy.
- Examination of TRIM25's correlation with tumor overexpression and patient survival.
Main Results:
- TRIM25 plays a multifaceted role in tumorigenesis and is overexpressed in many cancers, correlating with poor survival.
- TRIM25 modulates multiple cell death pathways, including apoptosis, pyroptosis, necroptosis, ferroptosis, and autophagy.
- TRIM25 interferes with the efficacy of current chemotherapeutics by influencing cell death.
Conclusions:
- Understanding TRIM25's complex role in cell death modulation is crucial.
- TRIM25 represents a potential therapeutic target for developing novel anticancer strategies.
- Targeting TRIM25 may help overcome resistance to existing chemotherapies and improve patient outcomes.
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