TET2-Dependent Hydroxymethylome Plasticity Reduces Melanoma Initiation and Progression.

Bonvin, Elise; Radaelli, Enrico; Bizet, Martin; Luciani, Flavie; Calonne, Emilie; Putmans, Pascale; Nittner, David; Singh, Nitesh Kumar et al. · Cancer Res · 2019

basic_science · Level V

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Abstract

Although numerous epigenetic aberrancies accumulate in melanoma, their contribution to initiation and progression remain unclear. The epigenetic mark 5-hydroxymethylcytosine (5hmC), generated through TET-mediated DNA modification, is now referred to as the sixth base of DNA and has recently been reported as a potential biomarker for multiple types of cancer. Loss of 5hmC is an epigenetic hallmark of melanoma, but whether a decrease in 5hmc levels contributes directly to pathogenesis or whether it merely results from disease progression-associated epigenetic remodeling remains to be established. Here, we show that NRAS-driven melanomagenesis in mice is accompanied by an overall decrease in 5hmC and specific 5hmC gains in selected gene bodies. Strikingly, genetic ablation of <i>Tet2</i> in mice cooperated with oncogenic NRAS<sup>Q61K</sup> to promote melanoma initiation while suppressing specific gains in 5hmC. We conclude that TET2 acts as a barrier to melanoma initiation and progression, partly by promoting 5hmC gains in specific gene bodies. SIGNIFICANCE: This work emphasizes the importance of epigenome plasticity in cancer development and highlights the involvement of druggable epigenetic factors in cancer.

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