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FOXO1, a tiny protein with intricate interactions: Promising therapeutic candidate in lung cancer
Mohammad Ebrahimnezhad1, Mohammad Natami2, Ghazaleh Hafezi Bakhtiari3
1Student Research Committee, Tabriz University of Medical Sciences, Tabriz, Iran; Department of Biochemistry, Faculty of Medicine, Tabriz University of Medical Sciences, Tabriz, Iran.
Abstract:
Nowadays, lung cancer is the most common cause of cancer-related deaths in both men and women globally. Despite the development of extremely efficient targeted agents, lung cancer progression and drug resistance remain serious clinical issues. Increasing knowledge of the molecular mechanisms underlying progression and drug resistance will enable the development of novel therapeutic methods. It has been revealed that transcription factors (TF) dysregulation, which results in considerable expression modifications of genes, is a generally prevalent phenomenon regarding human malignancies. The forkhead box O1 (FOXO1), a member of the forkhead transcription factor family with crucial roles in cell fate decisions, is suggested to play a pivotal role as a tumor suppressor in a variety of malignancies, especially in lung cancer. FOXO1 is involved in diverse cellular processes and also has clinical significance consisting of cell cycle arrest, apoptosis, DNA repair, oxidative stress, cancer prevention, treatment, and chemo/radioresistance. Based on the critical role of FOXO1, this transcription factor appears to be an appropriate target for future drug discovery in lung cancers. This review focused on the signaling pathways, and molecular mechanisms involved in FOXO1 regulation in lung cancer. We also discuss pharmacological compounds that are currently being administered for lung cancer treatment by affecting FOXO1 and also point out the essential role of FOXO1 in drug resistance. Future preclinical research should assess combination drug strategies to stimulate FOXO1 and its upstream regulators as potential strategies to treat resistant or advanced lung cancers.
Insights
Forkhead box O1 (FOXO1) is a key tumor suppressor in lung cancer, regulating processes like cell cycle arrest and apoptosis. Targeting FOXO1 may offer new strategies to overcome drug resistance and treat advanced lung cancers.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Lung cancer remains a leading cause of cancer mortality worldwide.
- Despite targeted therapies, lung cancer progression and drug resistance persist as major clinical challenges.
- Understanding molecular mechanisms is crucial for developing novel therapeutic strategies.
Purpose of the Study:
- To review the role of the transcription factor FOXO1 in lung cancer.
- To explore signaling pathways and molecular mechanisms regulating FOXO1 in lung cancer.
- To discuss FOXO1's involvement in drug resistance and its potential as a therapeutic target.
Main Methods:
- Literature review focusing on FOXO1's function in lung cancer.
- Analysis of molecular mechanisms and signaling pathways involved in FOXO1 regulation.
- Examination of current pharmacological compounds affecting FOXO1.
Main Results:
- FOXO1 acts as a tumor suppressor in lung cancer, influencing cell cycle arrest, apoptosis, DNA repair, and chemoresistance.
- Dysregulation of transcription factors, including FOXO1, is common in malignancies.
- FOXO1 plays a critical role in cellular processes relevant to cancer development and treatment.
Conclusions:
- FOXO1 is a significant therapeutic target for lung cancer drug discovery.
- Stimulating FOXO1 and its regulators may offer strategies for treating resistant or advanced lung cancers.
- Further preclinical research is needed to evaluate combination drug strategies targeting FOXO1.
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