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Updated: Nov 29, 2025

A Robust Discovery Platform for the Identification of Novel Mediators of Melanoma Metastasis
Published on: March 8, 2022
Somatic mutational landscapes of adherens junctions and their functional consequences in cutaneous melanoma
Praveen Kumar Korla1, Chih-Chieh Chen2, Daniel Esguerra Gracilla1
1Institute of Biomedical Sciences, National Sun Yat-sen University, Kaohsiung 80242, Taiwan.
Abstract:
Cell-cell interaction in skin homeostasis is tightly controlled by adherens junctions (AJs). Alterations in such regulation lead to melanoma development. However, mutations in AJs and their functional consequences are still largely unknown. Methods: Cadherin mutations in skin cutaneous melanoma were identified using sequencing data from TCGA dataset, followed by cross-validation with data from non-TCGA cohorts. Mutations with significant occurrence were subjected to structural prediction using MODELLER and functional protein simulation using GROMACS software. Neo-antigen prediction was carried out using NetMHCpan tool. Cell-based fluorescence reporter assay was used to validate β-catenin activity in the presence of cadherin mutations. Clinical significance was analyzed using datasets from TCGA and other non-TCGA cohorts. Targeted gene exon sequencing and immunofluorescence staining on melanoma tissues were performed to confirm the in silico findings. Results: Highly frequent mutations in type-II classical cadherins were found in melanoma with one unique recurrent mutation (S524L) in the fifth domain of CDH6, which potentially destabilizes Ca2+-binding and cell-cell contacts. Mutational co-occurrence and physical dynamics analyses placed CDH6 at the center of the top-four mutated cadherins (core CDHs; all type-II), suggesting altered heterophilic interactions in melanoma development. Mutations in the intracellular domains significantly disturbed CDH6/β-catenin complex formation, resulting in β-catenin translocation into cytosol or nucleus and dysregulation of canonical Wnt/β-catenin signaling. Although mutations in core CDH genes correlated with advanced cancer stages and lymph node invasion, the overall and disease-free survival times in those patients were longer in patients with wild-type. Peptide/MHC-I binding affinity predictions confirmed overall increased neo-antigen potentials of mutated cadherins, which associated with T-lymphocyte infiltration and better clinical outcomes after immunotherapy. Conclusion: Changes in cell-cell communications by somatic mutations in AJ cadherins function as one of mechanisms to trigger melanoma development. Certain mutations in AJs may serve as potential neo-antigens which conversely benefit patients for longer survival times.
Insights
Somatic mutations in adherens junctions (AJs) disrupt skin cell communication, driving melanoma. Certain AJ mutations act as neo-antigens, potentially improving patient survival and immunotherapy response.
Area of Science:
- Oncology
- Cell Biology
- Dermatology
Background:
- Cell-cell interactions, regulated by adherens junctions (AJs), are crucial for skin homeostasis.
- Dysregulation of AJs is implicated in melanoma development, but specific mutations and their effects remain largely unknown.
Purpose of the Study:
- To identify cadherin mutations in cutaneous melanoma and elucidate their functional and clinical consequences.
- To investigate the impact of these mutations on cell-cell contacts, Wnt/β-catenin signaling, and patient outcomes.
Main Methods:
- Utilized TCGA and other datasets for cadherin mutation identification in melanoma.
- Employed structural prediction, protein simulation, neo-antigen prediction, and cell-based assays for functional analysis.
- Validated findings through targeted sequencing and immunofluorescence staining on melanoma tissues.
Main Results:
- Identified frequent mutations in type-II classical cadherins, including a recurrent CDH6 mutation (S524L) affecting Ca2+ binding and cell contacts.
- Observed that intracellular domain mutations disrupt CDH6/β-catenin complex formation, leading to Wnt/β-catenin pathway dysregulation.
- Found correlations between core cadherin mutations, advanced cancer stages, and lymph node invasion, yet paradoxically longer survival times.
Conclusions:
- Somatic mutations in adherens junction cadherins disrupt cell-cell communication, contributing to melanoma development.
- Mutated cadherins can function as neo-antigens, associated with increased T-lymphocyte infiltration and improved immunotherapy outcomes, suggesting a dual role in melanoma progression and patient benefit.
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