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Comparative quantitative proteomic analysis of melanoma subtypes, nevus-associated melanoma, and corresponding nevi

  • Soraya Naimy
  • , Julie B K Sølberg
  • , Dorota E Kuczek
  • , Marianne Bengtson Løvendorf
  • , Michael Bzorek
  • , Thomas Litman
  • , Andreas Mund
  • , Lise Mette Rahbek Gjerdrum
  • , Rachael A Clark
  • , Matthias Mann
  • , Beatrice Dyring-Andersen*
  • *Corresponding author for this work

Research output: Contribution to journalArticleResearchpeer-review

Abstract

A substantial part of cutaneous malignant melanomas develops from benign nevi. However, the precise molecular events driving the transformation from benign to malignant melanoma are not well-understood. We used laser microdissection and mass spectrometry to analyze the proteomes of melanoma subtypes, including superficial spreading melanomas (n = 17), nodular melanomas (n = 17), and acral melanomas (n = 15). Furthermore, we compared the proteomes of nevi cells with those of melanoma cells within the same specimens (nevus-associated melanoma (n = 14)). In total, we quantified 7935 proteins. Despite the genomic and clinical differences of the melanoma subtypes, our analysis revealed relatively similar proteomes, except for the upregulation of proteins involved in immune activation in nodular melanomas versus acral melanomas. Examining nevus-associated melanoma versus nevi, we found 1725 differentially expressed proteins (false discovery rate < 0.05). Among these proteins were 140 that overlapped with cancer hallmarks, tumor suppressors, and regulators of metabolism and cell cycle. Pathway analysis indicated aberrant activation of the phosphoinositide 3-kinase-protein kinase B-mTOR pathways and the Hippo-YAP pathway. Using a classifier, we identified six proteins capable of distinguishing melanoma from nevi samples. Our study represents a comprehensive comparative analysis of the proteome in melanoma subtypes and associated nevi, offering insights into the biological behavior of these distinct entities.

Original languageEnglish
Pages (from-to)1608-1621.e4
Number of pages18
JournalJournal of Investigative Dermatology
Volume144
Issue number7
Early online date5 Jan 2024
DOIs
Publication statusPublished - Jul 2024

Funding

FundersFunder number
Novo Nordisk FoundationNNF21OC0066694, NNF15OC0014092
Lundbeck FoundationR182-2014-3641, R252-2017-1414
Aage Bangs Foundation
Region Sjælland
Harboe Foundation
Novo Nordisk FoundationNNF15OC0014092
University of CopenhagenPI Matthias Mann

    Keywords

    • Adult
    • Aged
    • Female
    • Humans
    • Laser Capture Microdissection
    • Male
    • Mass Spectrometry
    • Melanoma, Cutaneous Malignant
    • Melanoma/pathology
    • Middle Aged
    • Nevus/pathology
    • Proteome/analysis
    • Proteomics/methods
    • Signal Transduction
    • Skin Neoplasms/pathology
    • Melanoma
    • Proteomics
    • Skin
    • Mass spectrometry
    • Cancer

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