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Genetic and pharmacological disruption of the TEAD–YAP complex suppresses the oncogenic activity of YAP

Genes & Development · 2012 · Vol. 26(12) · pp. 1300–1305
Yi Liu‐ChittendenBo HuangJoong Sup ShimQian ChenSe-Jin LeeRobert A. AndersJun O. LiuDuojia Pan

Abstract

The Drosophila TEAD ortholog Scalloped is required for Yki-mediated overgrowth but is largely dispensable for normal tissue growth, suggesting that its mammalian counterpart may be exploited for selective inhibition of oncogenic growth driven by YAP hyperactivation. Here we test this hypothesis genetically and pharmacologically. We show that a dominant-negative TEAD molecule does not perturb normal liver growth but potently suppresses hepatomegaly/tumorigenesis resulting from YAP overexpression or Neurofibromin 2 (NF2)/Merlin inactivation. We further identify verteporfin as a small molecule that inhibits TEAD-YAP association and YAP-induced liver overgrowth. These findings provide proof of principle that inhibiting TEAD-YAP interactions is a pharmacologically viable strategy against the YAP oncoprotein.

Hippo pathway signaling and YAP/TAZLipid metabolism and biosynthesisUbiquitin and proteasome pathwaysBiologyHippo signaling pathwayCarcinogenesisCancer researchCell biologyHyperactivationMerlin (protein)MutationSignal transductionGenetics

MeSH terms

VerteporfinYAP-Signaling ProteinsTEA Domain Transcription FactorsAnimalsCell Transformation, NeoplasticDNA-Binding ProteinsGenes, DominantHepatomegalyHumansLiverMice, TransgenicPhenotypePhosphoproteinsPorphyrinsProtein Binding

Funding

  • Howard Hughes Medical Institute
  • National Institutes of Health
Citations
1,458
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24
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Genetic and pharmacological disruption of the TEAD–YAP complex suppresses the oncogenic activity of YAP · Scinovex