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ERK5 Signalling and Resistance to ERK1/2 Pathway Therapeutics: The Path Less Travelled?
Simon J Cook1, Pamela A Lochhead1,2
1Signalling Programme, The Babraham Institute, Babraham Research Campus, Cambridge, United Kingdom.
Abstract:
The RAS-regulated RAF-MEK1/2-ERK1/2 signalling pathway is frequently de-regulated in human cancer. Melanoma in particular exhibits a high incidence of activating BRAFV600E/K and NRASQ61L/K mutations and such cells are addicted to the activity of these mutant oncoproteins. As a result three different BRAF inhibitors (BRAFi) have now been approved for BRAFV600E/K- mutant melanoma and have transformed the treatment of this disease. Despite this, clinical responses are typically transient as tumour cells develop resistance. These resistance mechanisms frequently involve reinstatement of ERK1/2 signalling and BRAFi are now deployed in combination with one of three approved MEK1/2 inhibitors (MEKi) to provide more durable, but still transient, clinical responses. Furthermore, inhibitors to ERK1/2 (ERK1/2i) have also been developed to counteract ERK1/2 signalling. However, recent studies have suggested that BRAFi/MEKi and ERK1/2i resistance can arise through activation of a parallel signalling pathway leading to activation of ERK5, an unusual protein kinase that contains both a kinase domain and a transcriptional transactivation domain. Here we review the evidence supporting ERK5 as a mediator of BRAFi/MEKi and ERK1/2i resistance. We also review the challenges in targeting ERK5 signalling with small molecules, including paradoxical activation of the transcriptional transactivation domain, and discuss new therapeutic modalities that could be employed to target ERK5.
Insights
ERK5 signaling may drive resistance to BRAF, MEK, and ERK inhibitors in melanoma. Targeting ERK5 presents challenges due to its unique structure, but new therapeutic strategies are being explored.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Signaling
Background:
- The RAF-MEK1/2-ERK1/2 pathway is crucial in cancer, especially melanoma with BRAF/NRAS mutations.
- BRAF inhibitors (BRAFi) and MEK inhibitors (MEKi) have improved melanoma treatment but face resistance.
- ERK1/2 inhibitors (ERK1/2i) also face resistance, often linked to alternative signaling pathways.
Purpose of the Study:
- To review evidence implicating ERK5 in resistance to BRAFi, MEKi, and ERK1/2i.
- To discuss challenges in developing small molecule inhibitors for ERK5.
- To explore novel therapeutic approaches for targeting ERK5.
Main Methods:
- Literature review of studies on ERK5 and resistance mechanisms.
- Analysis of signaling pathways involved in BRAFi/MEKi/ERK1/2i resistance.
- Examination of small molecule inhibitor challenges and therapeutic modalities.
Main Results:
- ERK5 activation is a proposed mechanism for resistance to BRAFi/MEKi and ERK1/2i.
- ERK5 possesses a unique structure with kinase and transactivation domains, complicating drug development.
- Paradoxical activation of ERK5's transactivation domain is a key challenge.
Conclusions:
- ERK5 is a significant mediator of resistance in melanoma treated with targeted therapies.
- Targeting ERK5 requires overcoming challenges related to its dual functional domains.
- Novel therapeutic strategies are needed to effectively inhibit ERK5 signaling in resistant cancers.
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