ArticleClinical and translational medicine2023
YAP/TAZ activation predicts clinical outcomes in mesothelioma and is conserved in in vitro model of driver mutations.
Article in Clinical and translational medicine, 2023. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 8 papers.
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Who cites it
8 citing papers in PubMed, 9 citations in OpenAlex.
- From force to fate: Implications of mechanomemory in lung disease.Respiratory research · 2026Review
- In vivo screen reveals specific roles of Hippo pathway components in development and regeneration.Life science alliance · 2026Article
- Inactivation ofLife (Basel, Switzerland) · 2026Article
- Molecular Characterization of Pericardial Mesothelioma With Constrictive and Recurrent Pericarditis: TAZ Amplification and Hippo Pathway.JACC. Case reports · 2025Article
- Pipeline to evaluate YAP-TEAD inhibitors indicates TEAD inhibition repressesLife science alliance · 2025Article
- Gene therapy for diffuse pleural mesotheliomas in preclinical models by concurrent expression of NF2 and SuperHippo.Cell reports. Medicine · 2024Article
- Deciphering the role of transcription factors in glioblastoma cancer stem cells.Acta biochimica et biophysica Sinica · 2024Review
- YAP/TAZ activation predicts clinical outcomes in mesothelioma and is conserved in in vitro model of driver mutations.Clinical and translational medicine · 2023Article
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Authors and funding
8 authors at 2 institutions in 1 country.
Funding
Abstract
The Hippo signalling pathway is dysregulated across a wide range of cancer types and, although driver mutations that directly affect the core Hippo components are rare, a handful is found within pleural mesothelioma (PM). PM is a deadly disease of the lining of the lung caused by asbestos exposure. By pooling the largest-scale clinical datasets publicly available, we here interrogate associations between the most prevalent driver mutations within PM and Hippo pathway disruption in patients, while assessing correlations with a variety of clinical markers. This analysis reveals a consistent worse outcome in patients exhibiting transcriptional markers of YAP/TAZ activation, pointing to the potential of leveraging Hippo pathway transcriptional activation status as a metric by which patients may be meaningfully stratified. Preclinical models recapitulating disease are transformative in order to develop new therapeutic strategies. We here establish an isogenic cell-line model of PM, which represents the most frequently mutated genes and which faithfully recapitulates the molecular features of clinical PM. This preclinical model is developed to probe the molecular basis by which the Hippo pathway and key driver mutations affect cancer initiation and progression. Implementing this approach, we reveal the role of NF2 as a mechanosensory component of the Hippo pathway in mesothelial cells. Cellular NF2 loss upon physiological stiffnesses analogous to the tumour niche drive YAP/TAZ-dependent anchorage-independent growth. Consequently, the development and characterisation of this cellular model provide a unique resource to obtain molecular insights into the disease and progress new drug discovery programs together with future stratification of PM patients.
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