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A multi-omics integrative approach unravels novel genes and pathways associated with senescence escape after targeted therapy in NRAS mutant melanoma.
Gureghian, Vincent; Herbst, Hailee; Kozar, Ines; Mihajlovic, Katarina; Malod-Dognin, Noël; Ceddia, Gaia; Angeli, Cristian; Margue, Christiane; Randic, Tijana; Philippidou, Demetra; Nomigni, Milène Tetsi; Hemedan, Ahmed; Tranchevent, Leon-Charles; Longworth, Joseph; Bauer, Mark; Badkas, Apurva; Gaigneaux, Anthoula; Muller, Arnaud; Ostaszewski, Marek; Tolle, Fabrice; Przulj, Natasa; Kreis, Stephanie.
Affiliation
  • Gureghian V; Department of Life Sciences and Medicine, University of Luxembourg, 6, Avenue du Swing, L-4367, Belvaux, Luxembourg.
  • Herbst H; Department of Life Sciences and Medicine, University of Luxembourg, 6, Avenue du Swing, L-4367, Belvaux, Luxembourg.
  • Kozar I; Laboratoire National de Santé, Dudelange, Luxembourg.
  • Mihajlovic K; Barcelona Supercomputing Center, 08034, Barcelona, Spain.
  • Malod-Dognin N; Barcelona Supercomputing Center, 08034, Barcelona, Spain.
  • Ceddia G; Barcelona Supercomputing Center, 08034, Barcelona, Spain.
  • Angeli C; Department of Life Sciences and Medicine, University of Luxembourg, 6, Avenue du Swing, L-4367, Belvaux, Luxembourg.
  • Margue C; Department of Life Sciences and Medicine, University of Luxembourg, 6, Avenue du Swing, L-4367, Belvaux, Luxembourg.
  • Randic T; Department of Life Sciences and Medicine, University of Luxembourg, 6, Avenue du Swing, L-4367, Belvaux, Luxembourg.
  • Philippidou D; Department of Life Sciences and Medicine, University of Luxembourg, 6, Avenue du Swing, L-4367, Belvaux, Luxembourg.
  • Nomigni MT; Department of Life Sciences and Medicine, University of Luxembourg, 6, Avenue du Swing, L-4367, Belvaux, Luxembourg.
  • Hemedan A; Luxembourg Centre for Systems Biomedicine, University of Luxembourg, Esch-sur-Alzette, Luxembourg.
  • Tranchevent LC; Luxembourg Centre for Systems Biomedicine, University of Luxembourg, Esch-sur-Alzette, Luxembourg.
  • Longworth J; Experimental and Molecular Immunology, Department of Infection and Immunity, Luxembourg Institute of Health, Esch-sur-Alzette, Luxembourg.
  • Bauer M; Department of Life Sciences and Medicine, University of Luxembourg, 6, Avenue du Swing, L-4367, Belvaux, Luxembourg.
  • Badkas A; Department of Life Sciences and Medicine, University of Luxembourg, 6, Avenue du Swing, L-4367, Belvaux, Luxembourg.
  • Gaigneaux A; Department of Life Sciences and Medicine, University of Luxembourg, 6, Avenue du Swing, L-4367, Belvaux, Luxembourg.
  • Muller A; LuxGen, TMOH and Bioinformatics platform, Data Integration and Analysis unit, Luxembourg Institute of Health, Esch-sur-Alzette, Luxembourg.
  • Ostaszewski M; Luxembourg Centre for Systems Biomedicine, University of Luxembourg, Esch-sur-Alzette, Luxembourg.
  • Tolle F; Department of Life Sciences and Medicine, University of Luxembourg, 6, Avenue du Swing, L-4367, Belvaux, Luxembourg.
  • Przulj N; Barcelona Supercomputing Center, 08034, Barcelona, Spain.
  • Kreis S; Department of Computer Science, University College London, London, WC1E 6BT, UK.
Cancer Gene Ther ; 30(10): 1330-1345, 2023 10.
Article in En | MEDLINE | ID: mdl-37420093
ABSTRACT
Therapy Induced Senescence (TIS) leads to sustained growth arrest of cancer cells. The associated cytostasis has been shown to be reversible and cells escaping senescence further enhance the aggressiveness of cancers. Chemicals specifically targeting senescent cells, so-called senolytics, constitute a promising avenue for improved cancer treatment in combination with targeted therapies. Understanding how cancer cells evade senescence is needed to optimise the clinical benefits of this therapeutic approach. Here we characterised the response of three different NRAS mutant melanoma cell lines to a combination of CDK4/6 and MEK inhibitors over 33 days. Transcriptomic data show that all cell lines trigger a senescence programme coupled with strong induction of interferons. Kinome profiling revealed the activation of Receptor Tyrosine Kinases (RTKs) and enriched downstream signaling of neurotrophin, ErbB and insulin pathways. Characterisation of the miRNA interactome associates miR-211-5p with resistant phenotypes. Finally, iCell-based integration of bulk and single-cell RNA-seq data identifies biological processes perturbed during senescence and predicts 90 new genes involved in its escape. Overall, our data associate insulin signaling with persistence of a senescent phenotype and suggest a new role for interferon gamma in senescence escape through the induction of EMT and the activation of ERK5 signaling.
Subject(s)

Full text: 1 Database: MEDLINE Main subject: Insulins / Melanoma Type of study: Risk_factors_studies Language: En Journal: Cancer Gene Ther Year: 2023 Type: Article Affiliation country: Luxembourg

Full text: 1 Database: MEDLINE Main subject: Insulins / Melanoma Type of study: Risk_factors_studies Language: En Journal: Cancer Gene Ther Year: 2023 Type: Article Affiliation country: Luxembourg