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TAZ Promotes Cell Proliferation and Epithelial-Mesenchymal Transition and Is Inhibited by the Hippo Pathway

Molecular and Cellular Biology · 2008 · Vol. 28(7) · pp. 2426–2436
Qun‐Ying LeiHeng ZhangBin ZhaoZhengyu ZhaFeng BaiXin‐Hai PeiShimin ZhaoYue XiongKun‐Liang Guan

Abstract

TAZ is a WW domain containing a transcription coactivator that modulates mesenchymal differentiation and development of multiple organs. In this study, we show that TAZ is phosphorylated by the Lats tumor suppressor kinase, a key component of the Hippo pathway, whose alterations result in organ and tissue hypertrophy in Drosophila and contribute to tumorigenesis in humans. Lats phosphorylates TAZ on several serine residues in the conserved HXRXXS motif and creates 14-3-3 binding sites, leading to cytoplasmic retention and functional inactivation of TAZ. Ectopic expression of TAZ stimulates cell proliferation, reduces cell contact inhibition, and promotes epithelial-mesenchymal transition (EMT). Elimination of the Lats phosphorylation sites results in a constitutively active TAZ, enhancing the activity of TAZ in promoting cell proliferation and EMT. Our results elucidate a molecular mechanism for TAZ regulation and indicate a potential function of TAZ as an important target of the Hippo pathway in regulating cell proliferation tumorigenesis.

Hippo pathway signaling and YAP/TAZWnt/β-catenin signaling in development and cancerBiologyHippo signaling pathwayEpithelial–mesenchymal transitionMesenchymal stem cellCell biologyCell growthTransition (genetics)Signal transductionCancer researchGenetics

MeSH terms

c-Mer Tyrosine KinaseSerine-Threonine Kinase 3Hippo KinasesAcyltransferasesCell DivisionCell MovementCell Transformation, NeoplasticEpithelial CellsHumansMembrane ProteinsMesodermNerve Tissue ProteinsNuclear ProteinsPhosphorylationProtein Processing, Post-Translational

Funding

  • Shanghai Leading Academic Discipline Project
Citations
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