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Published on: January 7, 2019
The Fra-1/AP-1 Oncoprotein: From the "Undruggable" Transcription Factor to Therapeutic Targeting
Laura Casalino1, Francesco Talotta2, Amelia Cimmino1
1Institute of Genetics and Biophysics "Adriano Buzzati Traverso", Consiglio Nazionale dele Ricerche (CNR), 80131 Naples, Italy.
Abstract:
The genetic and epigenetic changes affecting transcription factors, coactivators, and chromatin modifiers are key determinants of the hallmarks of cancer. The acquired dependence on oncogenic transcriptional regulators, representing a major determinant of cancer cell vulnerability, points to transcription factors as ideal therapeutic targets. However, given the unavailability of catalytic activities or binding pockets for small-molecule inhibitors, transcription factors are generally regarded as undruggable proteins. Among components of the AP-1 complex, the FOS-family transcription factor Fra-1, encoded by FOSL1, has emerged as a prominent therapeutic target. Fra-1 is overexpressed in most solid tumors, in response to the BRAF-MAPK, Wnt-beta-catenin, Hippo-YAP, IL-6-Stat3, and other major oncogenic pathways. In vitro functional analyses, validated in onco-mouse models and corroborated by prognostic correlations, show that Fra-1-containing dimers control tumor growth and disease progression. Fra-1 participates in key mechanisms of cancer cell invasion, Epithelial-to-Mesenchymal Transition, and metastatic spreading, by driving the expression of EMT-inducing transcription factors, cytokines, and microRNAs. Here we survey various strategies aimed at inhibiting tumor growth, metastatic dissemination, and drug resistance by interfering with Fra-1 expression, stability, and transcriptional activity. We summarize several tools aimed at the design and tumor-specific delivery of Fra-1/AP-1-specific drugs. Along with RNA-based therapeutics targeting the FOSL1 gene, its mRNA, or cognate regulatory circRNAs, we will examine the exploitation of blocking peptides, small molecule inhibitors, and innovative Fra-1 protein degraders. We also consider the possible caveats concerning Fra-1 inhibition in specific therapeutic contexts. Finally, we discuss a recent suicide gene therapy-based approach, aimed at selectively killing the Fra-1-overexpressing neoplastic cells.
Insights
Transcription factor Fra-1 drives cancer growth and metastasis. This review explores therapeutic strategies targeting Fra-1, including RNA-based treatments and protein degraders, to combat cancer progression and drug resistance.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- Genetic and epigenetic alterations in transcription factors are crucial for cancer development.
- Transcription factors, like Fra-1, are key drivers of cancer cell vulnerability and progression.
- Fra-1 is overexpressed in solid tumors, regulated by major oncogenic pathways, and promotes tumor growth, invasion, and metastasis.
Purpose of the Study:
- To review and survey therapeutic strategies targeting the transcription factor Fra-1 for cancer treatment.
- To highlight the role of Fra-1 in tumor growth, metastasis, and drug resistance.
- To discuss innovative approaches for Fra-1 inhibition and selective cancer cell killing.
Main Methods:
- In vitro functional analyses and onco-mouse models to study Fra-1's role.
- Prognostic correlation analyses to link Fra-1 expression with patient outcomes.
- Survey of various therapeutic strategies including RNA-based therapeutics, blocking peptides, small molecule inhibitors, protein degraders, and suicide gene therapy.
Main Results:
- Fra-1-containing dimers are shown to control tumor growth and disease progression.
- Fra-1 drives key mechanisms of cancer cell invasion, Epithelial-to-Mesenchymal Transition, and metastasis.
- Multiple therapeutic avenues targeting Fra-1 expression, stability, and activity are being developed.
Conclusions:
- Fra-1 is a promising therapeutic target for inhibiting tumor growth and metastatic dissemination.
- Various innovative strategies, including RNA therapeutics and protein degraders, show potential for Fra-1 inhibition.
- Targeting Fra-1 offers a promising approach to overcome drug resistance and selectively eliminate cancer cells.
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