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The MEK/ERK Network as a Therapeutic Target in Human Cancer
Renee Barbosa1, Lucila A Acevedo2,3, Ronen Marmorstein4,3
1School of Arts and Sciences, University of Pennsylvania, Philadelphia, Pennsylvania.
Abstract:
The RAS-RAF-MEK-ERK pathway is the most well-studied of the MAPK cascades and is critical for cell proliferation, differentiation, and survival. Abnormalities in regulation resulting from mutations in components of this pathway, particularly in upstream proteins, RAS and RAF, are responsible for a significant fraction of human cancers and nearly all cutaneous melanomas. Activation of receptor tyrosine kinases by growth factors and various extracellular signals leads to the sequential activation of RAS, RAF, MEK, and finally ERK, which activates numerous transcription factors and facilitates oncogenesis in the case of aberrant pathway activation. While extensive studies have worked to elucidate the activation mechanisms and structural components of upstream MAPK components, comparatively less attention has been directed toward the kinases, MEK and ERK, due to the infrequency of oncogenic-activating mutations in these kinases. However, acquired drug resistance has become a major issue in the treatment of RAS- and RAF-mutated cancers. Targeting the terminal kinases in the MAPK cascade has shown promise for overcoming many of these resistance mechanisms and improving treatment options for patients with MAPK-aberrant cancers. Here, we will describe the role of MEK and ERK in MAPK signaling and summarize the current understanding of their interaction and activation mechanisms. We will also discuss existing approaches for targeting MEK and ERK, and the benefits of alternative strategies. Areas requiring further exploration will be highlighted to guide future research endeavors and aid in the development of alternative therapeutic strategies to combat surmounting drug resistance in treating MAPK-mediated cancers. VISUAL OVERVIEW: http://mcr.aacrjournals.org/content/molcanres/19/3/361/F1.large.jpg.
Insights
Targeting MEK and ERK kinases in the MAPK pathway offers a promising strategy to overcome drug resistance in cancers driven by RAS and RAF mutations. Further research into these terminal kinases can improve therapeutic options for MAPK-mediated cancers.
Area of Science:
- Molecular Biology
- Cancer Research
- Signal Transduction
Background:
- The RAS-RAF-MEK-ERK pathway (MAPK cascade) is crucial for cell functions, and its dysregulation drives many cancers, especially melanomas.
- Mutations in RAS and RAF are common drivers of cancer, but acquired drug resistance necessitates exploring other pathway components.
Purpose of the Study:
- To elucidate the roles of MEK and ERK in MAPK signaling and their activation mechanisms.
- To review current strategies targeting MEK and ERK and explore alternative approaches for overcoming drug resistance.
Main Methods:
- Review of existing literature on MAPK pathway components, activation, and therapeutic targeting.
- Analysis of MEK and ERK roles in overcoming resistance mechanisms in MAPK-driven cancers.
Main Results:
- MEK and ERK are terminal kinases in the MAPK cascade, with increasing relevance in acquired drug resistance.
- Targeting MEK and ERK shows promise in overcoming resistance to therapies for RAS- and RAF-mutated cancers.
Conclusions:
- Understanding MEK and ERK interactions and activation is key to developing effective cancer therapies.
- Further research into targeting MEK and ERK is essential for combating drug resistance in MAPK-mediated cancers.
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