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The ERK5/NF-κB signaling pathway targets endometrial cancer proliferation and survival
Nora Diéguez-Martínez1,2, Sergio Espinosa-Gil1,2, Guillermo Yoldi1
1Departament de Bioquímica i Biologia Molecular, Unitat de Medicina, and Institut de Neurociències, Universitat Autònoma de Barcelona (UAB), 08193, Barcelona, Spain.
Abstract:
Endometrial cancer (EC) is the most common type of gynecologic cancer in women of developed countries. Despite surgery combined with chemo-/radiotherapy regimens, overall survival of patients with high-risk EC tumors is poor, indicating a need for novel therapies. The MEK5-ERK5 pathway is activated in response to growth factors and to different stressors, including oxidative stress and cytokines. Previous evidence supports a role for the MEK5-ERK5 pathway in the pathology of several cancers. We investigated the role of ERK5 in EC. In silico analysis of the PanCancer Atlas dataset showed alterations in components of the MEK5-ERK5 pathway in 48% of EC patients. Here, we show that ERK5 inhibition or silencing decreased EGF-induced EC cell proliferation, and that genetic deletion of MEK5 resulted in EC impaired proliferation and reduced tumor growth capacity in nude mice. Pharmacologic inhibition or ERK5 silencing impaired NF-kB pathway in EC cells and xenografts. Furthermore, we found a positive correlation between ERK5 and p65/RELA protein levels in human EC tumor samples. Mechanistically, genetic or pharmacologic impairment of ERK5 resulted in downregulation of NEMO/IKKγ expression, leading to impaired p65/RELA activity and to apoptosis in EC cells and xenografts, which was rescued by NEMO/IKKγ overexpression. Notably, ERK5 inhibition, MEK5 deletion or NF-kB inhibition sensitized EC cells to standard EC chemotherapy (paclitaxel/carboplatin) toxicity, whereas ERK5 inhibition synergized with paclitaxel to reduce tumor xenograft growth in mice. Together, our results suggest that the ERK5-NEMO-NF-κB pathway mediates EC cell proliferation and survival. We propose the ERK5/NF-κB axis as new target for EC treatment.
Insights
Targeting the ERK5-NEMO-NF-κB pathway shows promise for treating endometrial cancer (EC). Inhibiting this pathway reduces EC cell proliferation and sensitizes tumors to chemotherapy, offering new therapeutic strategies for high-risk patients.
Area of Science:
- Oncology
- Molecular Biology
- Cell Signaling
Background:
- Endometrial cancer (EC) survival is poor for high-risk patients, necessitating novel therapeutic approaches.
- The MEK5-ERK5 signaling pathway is implicated in various cancers and activated by growth factors and stressors.
Purpose of the Study:
- To investigate the role of the MEK5-ERK5 pathway in endometrial cancer pathogenesis.
- To explore the potential of targeting the ERK5-NF-κB axis for EC treatment.
Main Methods:
- In silico analysis of the PanCancer Atlas dataset for pathway alterations in EC.
- ERK5 inhibition/silencing and MEK5 genetic deletion in EC cell lines and xenografts.
- Assessment of NF-κB pathway activity, NEMO/IKKγ expression, and apoptosis induction.
- Evaluation of EC cell sensitization to chemotherapy and synergistic effects with paclitaxel.
Main Results:
- Alterations in the MEK5-ERK5 pathway were found in 48% of EC patients.
- ERK5 inhibition/silencing and MEK5 deletion reduced EC cell proliferation and tumor growth.
- The ERK5 pathway modulates NF-κB activity via regulation of NEMO/IKKγ, impacting EC cell survival.
- ERK5 inhibition sensitized EC cells to chemotherapy and synergized with paclitaxel in vivo.
Conclusions:
- The ERK5-NEMO-NF-κB signaling axis is a key mediator of endometrial cancer cell proliferation and survival.
- Targeting the ERK5/NF-κB pathway represents a promising therapeutic strategy for endometrial cancer, particularly in combination with standard chemotherapy.
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