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Biology subjects

Vietri Rudan, M.

Publications and source records attributed to Vietri Rudan, M..

2 recordsLinked to original sources

Plasticity of squamous differentiation drives drug resistance in HNSCC

A critical hallmark of carcinogenesis is the ability of cancer cells to evade the loss of self-renewal normally imposed by terminal differentiation. However, therapies directly attempting to promote differentiation have shown limited efficacy in solid tumours and the cellular mechanisms behind cancer cell persistence are poorly understood. Here we established a patient-derived orthotopic head and neck squamous cell carcinoma (HNSCC) model in vivo that recapitulates the genetic, cellular and histopathological heterogeneity of HNSCC. Experimental induction of differentiation and clonal lineage tracing by fluorescent barcoding revealed a heterogeneous response to terminal differentiation stimuli, enabling subsets of cancer cells to escape differentiation-associated loss of self-renewal. While pharmacological inhibition of ErbB-MEK1/2-ERK1/2 pathway by afatinib could induce the differentiation of patient-derived cancer cells, some highly clonogenic cells remained refractory to differentiation signals even though they were capable of differentiating. Differentiation reporter IVLmCherry further confirmed that differentiation and loss of self-renewal ability were partially uncoupled in patient-derived HNSCC cells. These findings identify differentiation-resistant clonogenic populations as a key barrier to therapeutic efficacy and provide a framework for improving differentiation-based strategies in HNSCC.

cancer biology↗

Neutral evolution of snoRNA Host Gene long non-coding RNA affects cell fate control

A fundamental challenge in molecular biology is to understand how evolving genomes can acquire new functions. Several recent studies have underscored how non-conserved sequences can contribute to organismal diversification in the primate lineage1-3. Actively transcribed, non-coding parts of the genome provide a potential platform for the development of new functional sequences4, but their biological and evolutionary roles remain largely unexplored. Here we show that a set of neutrally evolving long non-coding RNAs (lncRNA) arising from small nucleolar RNA Host Genes (SNHGs) are highly expressed in skin and dysregulated in inflammatory conditions. SNHGs affect cell fate determination and can behave as evolutionary intermediates to develop new functions5. Using SNHG7 and human epidermal keratinocytes as a model, we describe a mechanism by which these lncRNAs can increase self-renewal and inhibit differentiation. SNHG7 lncRNAs activity has been acquired recently in the primate lineage and depends on a short sequence required for microRNA binding. Taken together, our results highlight the importance of understanding the role of fast-evolving transcripts in normal and diseased epithelia, and inform on how poorly conserved, actively transcribed non-coding sequences can participate in the evolution of genomic functionality.

cell biology↗