Author:
Slaninová Věra,Heron-Milhavet Lisa,Robin Mathilde,Jeanson Laura,Aissanou Adam,Kantar Diala,Tosi Diego,Bréhélin Laurent,Gongora Céline,Djiane Alexandre
Abstract
AbstractYAP and TAZ, the Hippo pathway terminal transcriptional activators, are frequently upregulated in cancers. In tumor cells, they have been mainly associated with increased tumorigenesis controlling different aspects from cell cycle regulation, stemness, or resistance to chemotherapies. In fewer cases, they have also been shown to oppose cancer progression, including by promoting cell death through the action of the p73/YAP transcriptional complex, in particular after chemotherapeutic drug exposure. Using HCT116 cells, we show here that oxaliplatin treatment led to core Hippo pathway down-regulation and nuclear accumulation of TAZ. We further show that TAZ was required for the increased sensitivity of HCT116 cells to oxaliplatin, an effect that appeared independent of p73, but which required the nuclear relocalization of TAZ. Accordingly, Verteporfin and CA3, two drugs affecting the activity of YAP and TAZ, showed antagonistic effects with oxaliplatin in co-treatments. Importantly, using several colorectal cell lines, we show that the sensitizing action of TAZ to oxaliplatin is dependent on the p53 status of the cells. Our results support thus an early action of TAZ to sensitize cells to oxaliplatin, consistent with a model in which nuclear TAZ in the context of DNA damage and p53 activity pushes cells towards apoptosis.
Funder
Fondation de France
Ligue Contre le Cancer
Fondation ARC pour la Recherche sur le Cancer
LabEx NUMEV
Institut National Du Cancer
SIRIC Montpellier Cancer
LabEx MabImprove
Cancéropôle Grand Ouest
Publisher
Springer Science and Business Media LLC
Cited by
1 articles.
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