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Published on: March 3, 2016
NFATc2 is an intrinsic regulator of melanoma dedifferentiation
V Perotti1, P Baldassari1, A Molla1
1Human Tumors Immunobiology Unit, Department of Experimental Oncology and Molecular Medicine, Fondazione IRCCS Istituto Nazionale dei Tumori, Milan, Italy.
Abstract:
Melanoma dedifferentiation, characterized by the loss of MITF and MITF regulated genes and by upregulation of stemness markers as CD271, is implicated in resistance to chemotherapy, target therapy and immunotherapy. The identification of intrinsic mechanisms fostering melanoma dedifferentiation may provide actionable therapeutic targets to improve current treatments. Here, we identify NFATc2 transcription factor as an intrinsic regulator of human melanoma dedifferentiation. In panels of melanoma cell lines, NFATc2 expression correlated inversely with MITF at both mRNA and protein levels. NFATc2(+/Hi) melanoma cell lines were CD271(+) and deficient for expression of melanocyte differentiation antigens (MDAs) MART-1, gp100, tyrosinase and of GPNMB, PGC1-α and Rab27a, all regulated by MITF. Targeting of NFATc2 by small interfering RNA, short hairpin RNA and by an NFATc2 inhibitor upregulated MITF, MDAs, GPNMB, PGC-1α, tyrosinase activity and pigmentation and suppressed CD271. Mechanistically, we found that NFATc2 controls melanoma dedifferentiation by inducing expression in neoplastic cells of membrane-bound tumor necrosis factor-α (mTNF-α) and that melanoma-expressed TNF-α regulates a c-myc-Brn2 axis. Specifically, NFATc2, mTNF-α and expression of TNF receptors were significantly correlated in panels of cell lines. NFATc2 silencing suppressed TNF-α expression, and neutralization of melanoma-expressed TNF-α promoted melanoma differentiation. Moreover, silencing of NFATc2 and TNF-α neutralization downmodulated c-myc and POU3F2/Brn2. Brn2 was strongly expressed in NFATc2(+/Hi) MITF(Lo) cell lines and its silencing upregulated MITF. Targeting of c-myc, by silencing or by a c-myc inhibitor, suppressed Brn2 and upregulated MITF and MART-1 in melanoma cells. The relevance of NFATc2-dependent melanoma dedifferentiation for immune escape was shown by cytolytic T-cell assays. NFATc2(Hi) MITF(Lo) MDA(Lo) HLA-A2.1(+) melanoma cells were poorly recognized by MDA-specific and HLA-A2-restricted CTL lines, but NFATc2 targeting significantly increased CTL-mediated tumor recognition. Taken together, these results suggest that the expression of NFATc2 promotes melanoma dedifferentiation and immune escape.
Insights
We identified NFATc2 as a key driver of melanoma dedifferentiation, promoting resistance to cancer therapies. Targeting NFATc2 restores differentiation and enhances anti-tumor immune responses, offering new therapeutic strategies.
Area of Science:
- Oncology
- Molecular Biology
- Immunology
Background:
- Melanoma dedifferentiation, marked by reduced MITF and increased stemness markers like CD271, is linked to treatment resistance.
- Understanding the intrinsic mechanisms of melanoma dedifferentiation is crucial for developing improved therapeutic strategies.
Purpose of the Study:
- To identify intrinsic regulators of human melanoma dedifferentiation.
- To investigate the role of NFATc2 in melanoma dedifferentiation and its impact on immune escape.
Main Methods:
- Analysis of NFATc2 and MITF expression in melanoma cell lines.
- Functional studies using siRNA, shRNA, and chemical inhibitors targeting NFATc2, TNF-α, and c-myc.
- Cytolytic T-cell assays to assess immune recognition of melanoma cells.
Main Results:
- NFATc2 expression inversely correlated with MITF, promoting a dedifferentiated, CD271-positive phenotype.
- NFATc2 drives dedifferentiation via induction of membrane-bound TNF-α, regulating a c-myc-Brn2 axis.
- Targeting NFATc2, TNF-α, or c-myc restored melanoma differentiation and enhanced T-cell recognition of tumor cells.
Conclusions:
- NFATc2 is a critical intrinsic regulator of melanoma dedifferentiation and immune escape.
- Targeting the NFATc2 pathway presents a promising therapeutic strategy to overcome treatment resistance and enhance anti-melanoma immunity.
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