TBX3 acts as tissue-specific component of the Wnt/β-catenin transcriptional complex

Dario Zimmerli(University of Zurich), Costanza Borrelli(ETH Zurich), Amaia Jauregi‐Miguel(Linköping University), Simon Söderholm(Linköping University), Salome M. Brütsch(University of Zurich), Nikolaos Doumpas(University of Zurich), Jan Reichmuth(University of Zurich), Fabienne Murphy-Seiler(École Polytechnique Fédérale de Lausanne), Michel Aguet(École Polytechnique Fédérale de Lausanne), Konrad Basler(University of Zurich), Andreas E. Moor(ETH Zurich), Claudio Cantù(Linköping University)
eLife
August 18, 2020
Cited by 49Open Access
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Abstract

BCL9 and PYGO are β-catenin cofactors that enhance the transcription of Wnt target genes. They have been proposed as therapeutic targets to diminish Wnt signaling output in intestinal malignancies. Here we find that, in colorectal cancer cells and in developing mouse forelimbs, BCL9 proteins sustain the action of β-catenin in a largely PYGO-independent manner. Our genetic analyses implied that BCL9 necessitates other interaction partners in mediating its transcriptional output. We identified the transcription factor TBX3 as a candidate tissue-specific member of the β-catenin transcriptional complex. In developing forelimbs, both TBX3 and BCL9 occupy a large number of Wnt-responsive regulatory elements, genome-wide. Moreover, mutations in Bcl9 affect the expression of TBX3 targets in vivo, and modulation of TBX3 abundance impacts on Wnt target genes transcription in a β-catenin- and TCF/LEF-dependent manner. Finally, TBX3 overexpression exacerbates the metastatic potential of Wnt-dependent human colorectal cancer cells. Our work implicates TBX3 as context-dependent component of the Wnt/β-catenin-dependent transcriptional complex.


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