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MAPK Signaling and Inflammation Link Melanoma Phenotype Switching to Induction of CD73 during Immunotherapy. | LitMetric

AI Article Synopsis

  • Researchers found that the enzyme CD73, which produces immunosuppressive adenosine, is crucial in the switching of melanoma cell phenotypes, promoting resistance to therapy.
  • CD73 expression increases due to mutations in the MAPK pathway and the influence of growth factors, leading to a mesenchymal-like state in melanoma cells, especially when proinflammatory cytokines like TNFα are present.
  • In clinical observations, elevated CD73 levels were noted in melanoma patients who relapsed during immunotherapy, indicating it as a potential target for combination treatments, but its variable expression complicates its use as a reliable biomarker.

Article Abstract

Evolution of tumor cell phenotypes promotes heterogeneity and therapy resistance. Here we found that induction of CD73, the enzyme that generates immunosuppressive adenosine, is linked to melanoma phenotype switching. Activating MAPK mutations and growth factors drove CD73 expression, which marked both nascent and full activation of a mesenchymal-like melanoma cell state program. Proinflammatory cytokines like TNFα cooperated with MAPK signaling through the c-Jun/AP-1 transcription factor complex to activate CD73 transcription by binding to an intronic enhancer. In a mouse model of T-cell immunotherapy, CD73 was induced in relapse melanomas, which acquired a mesenchymal-like phenotype. We also detected CD73 upregulation in melanoma patients progressing under adoptive T-cell transfer or immune checkpoint blockade, arguing for an adaptive resistance mechanism. Our work substantiates CD73 as a target to combine with current immunotherapies, but its dynamic regulation suggests limited value of CD73 pretreatment expression as a biomarker to stratify melanoma patients. .

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Source
http://dx.doi.org/10.1158/0008-5472.CAN-17-0395DOI Listing

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