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Exploiting the Ref-1-APE1 node in cancer signaling and other diseases: from bench to clinic
Fenil Shah1, Derek Logsdon1,2, Richard A Messmann3
1Department of Pediatrics, Herman B Wells Center for Pediatric Research, Indiana University School of Medicine, 1044 W. Walnut St., Indianapolis, IN 46202, USA.
Abstract:
Reduction-oxidation factor 1-apurinic/apyrimidinic endonuclease (Ref-1/APE1) is a critical node in tumor cells, both as a redox regulator of transcription factor activation and as part of the DNA damage response. As a redox signaling protein, Ref-1/APE1 enhances the transcriptional activity of STAT3, HIF-1α, nuclear factor kappa B, and other transcription factors to promote growth, migration, and survival in tumor cells as well as inflammation and angiogenesis in the tumor microenvironment. Ref-1/APE1 is activated in a variety of cancers, including prostate, colon, pancreatic, ovarian, lung and leukemias, leading to increased aggressiveness. Transcription factors downstream of Ref-1/APE1 are key contributors to many cancers, and Ref-1/APE1 redox signaling inhibition slows growth and progression in a number of tumor types. Ref-1/APE1 inhibition is also highly effective when paired with other drugs, including standard-of-care therapies and therapies targeting pathways affected by Ref-1/APE1 redox signaling. Additionally, Ref-1/APE1 plays a role in a variety of other indications, such as retinopathy, inflammation, and neuropathy. In this review, we discuss the functional consequences of activation of the Ref-1/APE1 node in cancer and other diseases, as well as potential therapies targeting Ref-1/APE1 and related pathways in relevant diseases. APX3330, a novel oral anticancer agent and the first drug to target Ref-1/APE1 for cancer is entering clinical trials and will be explored in various cancers and other diseases bringing bench discoveries to the clinic.
Insights
Reduction-oxidation factor 1-apurinic/apyrimidinic endonuclease (Ref-1/APE1) is crucial in cancer, regulating transcription factors and DNA repair. Inhibiting Ref-1/APE1 shows promise in slowing tumor growth and is effective with other therapies.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Ref-1/APE1 acts as a redox regulator and DNA repair enzyme in tumor cells.
- It enhances transcription factors (STAT3, HIF-1α, NFκB) promoting tumor growth, migration, survival, inflammation, and angiogenesis.
- Ref-1/APE1 activation is linked to increased aggressiveness in various cancers like prostate, colon, and lung.
Purpose of the Study:
- To review the functional consequences of Ref-1/APE1 activation in cancer and other diseases.
- To discuss potential therapeutic strategies targeting Ref-1/APE1 and associated pathways.
- To highlight the clinical development of APX3330, a novel Ref-1/APE1 inhibitor.
Main Methods:
- Literature review of Ref-1/APE1's role in cancer and disease.
- Analysis of Ref-1/APE1's impact on transcription factor activity and DNA damage response.
- Discussion of therapeutic approaches, including combination therapies and novel agents like APX3330.
Main Results:
- Ref-1/APE1 redox signaling inhibition effectively slows tumor growth and progression.
- Combined inhibition of Ref-1/APE1 with other drugs enhances therapeutic efficacy.
- Ref-1/APE1 is implicated in other conditions such as retinopathy, inflammation, and neuropathy.
Conclusions:
- Ref-1/APE1 is a significant therapeutic target in oncology and other diseases.
- Targeting Ref-1/APE1 offers a promising strategy for cancer treatment, potentially in combination with existing therapies.
- The novel agent APX3330 represents a new therapeutic avenue for Ref-1/APE1-driven diseases, moving from bench to clinical trials.
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