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A Robust Discovery Platform for the Identification of Novel Mediators of Melanoma Metastasis
Published on: March 8, 2022
The Alternative TrkAIII Splice Variant, a Targetable Oncogenic Participant in Human Cutaneous Malignant Melanoma
Lucia Cappabianca1, Veronica Zelli1, Cristina Pellegrini1,2
1Department of Biotechnological and Applied Clinical Sciences, University of L'Aquila, 67100 L'Aquila, Italy.
Abstract:
Post-therapeutic relapse, poor survival rates and increasing incidence justify the search for novel therapeutic targets and strategies in cutaneous malignant melanoma (CMM). Within this context, a potential oncogenic role for TrkA in CMM is suggested by reports of NTRK1 amplification, enhanced TrkA expression and intracellular TrkA activation associated with poor prognosis. TrkA, however, exhibits tumour-suppressing properties in melanoma cell lines and has recently been reported not to be associated with CMM progression. To better understand these contradictions, we present the first analysis of potential oncogenic alternative TrkA mRNA splicing, associated with TrkA immunoreactivity, in CMMs, and compare the behaviour of fully spliced TrkA and the alternative TrkAIII splice variant in BRAF(V600E)-mutated A375 melanoma cells. Alternative TrkA splicing in CMMs was associated with unfolded protein response (UPR) activation. Of the several alternative TrkA mRNA splice variants detected, TrkAIII was the only variant with an open reading frame and, therefore, oncogenic potential. TrkAIII expression was more frequent in metastatic CMMs, predominated over fully spliced TrkA mRNA expression in ≈50% and was invariably linked to intracellular phosphorylated TrkA immunoreactivity. Phosphorylated TrkA species resembling TrkAIII were also detected in metastatic CMM extracts. In A375 cells, reductive stress induced UPR activation and promoted TrkAIII expression and, in transient transfectants, promoted TrkAIII and Akt phosphorylation, enhancing resistance to reductive stress-induced death, which was prevented by lestaurtinib and entrectinib. In contrast, fully spliced TrkA was dysfunctional in A375 cells. The data identify fully spliced TrkA dysfunction as a novel mechanism for reducing melanoma suppression, support a causal relationship between reductive stress, UPR activation, alternative TrkAIII splicing and TrkAIII activation and characterise a targetable oncogenic pro-survival role for TrkAIII in CMM.
Insights
Novel TrkAIII splicing in melanoma promotes cancer survival. This oncogenic variant, linked to stress responses, offers a new therapeutic target for cutaneous malignant melanoma (CMM).
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- Cutaneous malignant melanoma (CMM) presents challenges with relapse and poor survival, necessitating new therapeutic targets.
- TrkA's role in CMM is debated, with some studies suggesting oncogenic potential (NTRK1 amplification, TrkA activation) and others indicating tumor-suppressive functions.
- Contradictory findings highlight the need to investigate alternative TrkA mRNA splicing in CMM.
Purpose of the Study:
- To analyze alternative TrkA mRNA splicing and its association with TrkA immunoreactivity in CMM.
- To compare the function of fully spliced TrkA and the TrkAIII splice variant in BRAF(V600E)-mutated melanoma cells.
- To elucidate the role of TrkAIII in CMM progression and its potential as a therapeutic target.
Main Methods:
- Analysis of alternative TrkA mRNA splice variants in CMM samples.
- Immunohistochemical assessment of TrkA immunoreactivity.
- Functional studies using BRAF(V600E)-mutated A375 melanoma cells under reductive stress conditions.
- Pharmacological inhibition using lestaurtinib and entrectinib.
Main Results:
- Alternative TrkA splicing in CMM was linked to unfolded protein response (UPR) activation.
- TrkAIII was the only detected variant with oncogenic potential (open reading frame).
- TrkAIII expression was more frequent in metastatic CMM, often predominant over full-length TrkA, and correlated with phosphorylated TrkA.
- In A375 cells, TrkAIII expression enhanced resistance to reductive stress-induced death, a effect blocked by TrkA inhibitors.
- Fully spliced TrkA was found to be dysfunctional in A375 cells.
Conclusions:
- Fully spliced TrkA dysfunction is a novel mechanism contributing to reduced melanoma suppression.
- A causal link exists between reductive stress, UPR activation, alternative TrkAIII splicing, and TrkAIII activation in CMM.
- TrkAIII plays a targetable, oncogenic, pro-survival role in CMM, representing a promising therapeutic strategy.
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