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Published on: September 19, 2018
ERK pathway agonism for cancer therapy: evidence, insights, and a target discovery framework
Oleg Timofeev1, Philippe Giron2, Steffen Lawo3
1Institute of Molecular Oncology, Member of the German Center for Lung Research (DZL), Philipps University, 35043, Marburg, Germany.
Abstract:
At least 40% of human cancers are associated with aberrant ERK pathway activity (ERKp). Inhibitors targeting various effectors within the ERKp have been developed and explored for over two decades. Conversely, a substantial body of evidence suggests that both normal human cells and, notably to a greater extent, cancer cells exhibit susceptibility to hyperactivation of ERKp. However, this vulnerability of cancer cells remains relatively unexplored. In this review, we reexamine the evidence on the selective lethality of highly elevated ERKp activity in human cancer cells of varying backgrounds. We synthesize the insights proposed for harnessing this vulnerability of ERK-associated cancers for therapeutical approaches and contextualize these insights within established pharmacological cancer-targeting models. Moreover, we compile the intriguing preclinical findings of ERK pathway agonism in diverse cancer models. Lastly, we present a conceptual framework for target discovery regarding ERKp agonism, emphasizing the utilization of mutual exclusivity among oncogenes to develop novel targeted therapies for precision oncology.
Insights
Aberrant ERK pathway activity (ERKp) drives many cancers. This review explores exploiting cancer cell vulnerability to ERKp hyperactivation for novel targeted therapies and precision oncology.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- ERK pathway hyperactivation (ERKp) is implicated in at least 40% of human cancers.
- While ERKp inhibitors are common, cancer cell susceptibility to ERKp hyperactivation is underexplored.
- This vulnerability presents a potential therapeutic target for ERK-associated cancers.
Purpose of the Study:
- To reexamine evidence on the selective lethality of highly elevated ERKp activity in human cancer cells.
- To synthesize insights for harnessing ERKp vulnerability in cancer therapeutics.
- To compile preclinical findings of ERK pathway agonism and propose a framework for target discovery.
Main Methods:
- Review of existing literature on ERK pathway activity in cancer.
- Analysis of preclinical data on ERK pathway agonism.
- Conceptual framework development for target discovery in precision oncology.
Main Results:
- Evidence suggests cancer cells are selectively vulnerable to ERKp hyperactivation.
- Preclinical studies show promise for ERK pathway agonism in various cancer models.
- Mutual exclusivity among oncogenes can guide novel targeted therapy development.
Conclusions:
- Harnessing ERKp hyperactivation offers a novel therapeutic strategy for ERK-associated cancers.
- ERK pathway agonism warrants further investigation, particularly within precision oncology frameworks.
- Target discovery utilizing oncogene mutual exclusivity can lead to innovative cancer treatments.
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