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Intramucosal Inoculation of Squamous Cell Carcinoma Cells in Mice for Tumor Immune Profiling and Treatment Response Assessment
Published on: April 22, 2019
5'-Cap‒Dependent Translation as a Potent Therapeutic Target for Lethal Human Squamous Cell Carcinoma
Ritesh Kumar Srivastava1, Jasim Khan1, Aadithya Arumugam1
1UAB Research Center of Excellence in Arsenicals and Department of Dermatology, University of Alabama at Birmingham, Birmingham, Alabama, USA.
Abstract:
Skin squamous cell carcinomas (SCCs) are a major cause of death in patients who have undergone or will undergo organ transplantation. Moreover, these neoplasms cause significant disease and economic burden and diminish patients' life quality. However, no effective treatment or intervention strategies are available. In this study, we investigated the pathologic role of 5'-cap translation, which is regulated by the formation of a ternary initiation factor complex involving eIF4E, eIF4G, and eIF4A1. We detected increased expression of phosphorylated eIF4E, eIF4G, and eIF4A1 in human and murine skin SCCs. The increase in these ternary initiation factor complex proteins was associated with enhanced eIF4E translation targets cyclin D1 and c-Myc. Conversely, small interfering RNA-mediated depletion of eIF4E in human SCC cells (A431 and SCC-13) reduced eIF4G and proteins that regulate the cell cycle and proliferation. Notably, inhibition of Raf/MAPK/extracellular signal-regulated kinase signaling decreased eIF4E and phosphorylated eIF4E accumulation and significantly diminished cell-cycle gene expression and tumor volume of A431-derived xenograft tumors. Furthermore, disrupting the eIF4E with an allosteric inhibitor of eIF4E and eIF4G binding, 4EGI-1, decreased the eIF4E/eIF4G expression and reduced the proliferation. Finally, combined inhibition of the Raf/MAPK/extracellular signal-regulated kinase axis and eIF4E impaired 5'-cap‒dependent translation and abrogated tumor cell proliferation. These data demonstrate that 5'-cap‒dependent translation is a potential therapeutic target for abrogating lethal skin SCCs in patients who have undergone or will undergo organ transplantation.
Insights
Targeting 5'-cap translation, regulated by eIF4E, eIF4G, and eIF4A1, shows promise for treating lethal skin squamous cell carcinomas (SCCs) in transplant patients. This approach inhibits tumor growth and proliferation.
Area of Science:
- Oncology
- Molecular Biology
- Translational Medicine
Background:
- Skin squamous cell carcinomas (SCCs) pose a significant mortality risk for organ transplant recipients.
- Current treatment strategies for these SCCs are limited, impacting patient quality of life and healthcare costs.
Purpose of the Study:
- To investigate the role of 5 -cap translation initiation complex proteins (eIF4E, eIF4G, eIF4A1) in the pathogenesis of skin SCCs.
- To explore the therapeutic potential of targeting this pathway in preclinical models.
Main Methods:
- Assessed expression of phosphorylated eIF4E, eIF4G, and eIF4A1 in human and murine SCCs.
- Utilized small interfering RNA (siRNA) to deplete eIF4E in SCC cell lines.
- Inhibited Raf/MAPK/extracellular signal-regulated kinase (ERK) signaling and disrupted eIF4E/eIF4G binding with 4EGI-1.
- Evaluated tumor growth in xenograft models.
Main Results:
- Elevated levels of phosphorylated eIF4E, eIF4G, and eIF4A1 correlated with increased expression of translation targets cyclin D1 and c-Myc in SCCs.
- eIF4E depletion reduced eIF4G and cell cycle regulatory proteins, inhibiting proliferation.
- Inhibition of Raf/MAPK/ERK signaling and disruption of eIF4E/eIF4G binding significantly reduced tumor cell proliferation and tumor volume.
- Combined inhibition of Raf/MAPK/ERK and eIF4E abrogated 5 -cap-dependent translation and tumor cell proliferation.
Conclusions:
- 5 -cap-dependent translation is a critical driver of skin SCC progression, particularly in immunocompromised transplant patients.
- Targeting the eIF4E/eIF4G complex and associated signaling pathways represents a promising therapeutic strategy for managing lethal skin SCCs.
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