Single-cell multiomics reveals the interplay of clonal evolution and cellular plasticity in hepatoblastoma.

单细胞多组学揭示了肝母细胞瘤中克隆演化和细胞可塑性的相互作用

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作者:Roehrig Amélie, Hirsch Theo Z, Pire Aurore, Morcrette Guillaume, Gupta Barkha, Marcaillou Charles, Imbeaud Sandrine, Chardot Christophe, Gonzales Emmanuel, Jacquemin Emmanuel, Sekiguchi Masahiro, Takita Junko, Nagae Genta, Hiyama Eiso, Guérin Florent, Fabre Monique, Aerts Isabelle, Taque Sophie, Laithier Véronique, Branchereau Sophie, Guettier Catherine, Brugières Laurence, Fresneau Brice, Zucman-Rossi Jessica, Letouzé Eric
Hepatoblastomas (HB) display heterogeneous cellular phenotypes that influence the clinical outcome, but the underlying mechanisms are poorly understood. Here, we use a single-cell multiomic strategy to unravel the molecular determinants of this plasticity. We identify a continuum of HB cell states between hepatocytic (scH), liver progenitor (scLP) and mesenchymal (scM) differentiation poles, with an intermediate scH/LP population bordering scLP and scH areas in spatial transcriptomics. Chromatin accessibility landscapes reveal the gene regulatory networks of each differentiation pole, and the sequence of transcription factor activations underlying cell state transitions. Single-cell mapping of somatic alterations reveals the clonal architecture of each tumor, showing that each genetic subclone displays its own range of cellular plasticity across differentiation states. The most scLP subclones, overexpressing stem cell and DNA repair genes, proliferate faster after neo-adjuvant chemotherapy. These results highlight how the interplay of clonal evolution and epigenetic plasticity shapes the potential of HB subclones to respond to chemotherapy.

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