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van de Grift, Y.

Publications and source records attributed to van de Grift, Y..

2 recordsLinked to original sources

The Transcription Factor Binding Landscape of Mouse Development

Gene regulators physically associate to the genome, in a combinatorial fashion, to drive tissue-specific gene expression programs. Uncovering the genome-wide activity of all gene regulators across tissues is therefore needed to understand how the genome is regulated during development. Here, we take a first step forward towards achieving this goal. Using CUT&RUN, we systematically measured the genome-wide binding profiles of key transcription factors and cofactors that mediate the activity of ontogenetically relevant signaling pathways in select mouse tissues at two developmental stages. Computation of the numerous genome-wide binding datasets unveiled a large degree of tissue and time-specific activity for each gene regulator, and several factor-specific idiosyncrasies. Moreover, we identified "popular" regulatory regions that are bound by a multitude of pathway regulators. Popular regions tend to be more evolutionarily conserved, implying their essentiality. Consistently, they lie in the proximity of genes whose dysregulation causes early embryonic lethality in the mouse. Moreover, the human homologs of these regions are also bound by many gene regulators and are highly conserved in human populations, indicating that they retain functional relevance for human development. This work constitutes a decisive step towards understanding how the genome is simultaneously read and used by gene regulators in a holistic fashion and unveils multiple genomic mechanisms that drive embryonic development.

genomics↗

The Developmental Transcription Factor TBX3 Physically Engages with the Wnt/β-catenin Transcriptional Complex in Human Colorectal Cancer Cells to Regulate Metastasis Genes

Wnt signaling orchestrates gene expression in a plethora of processes during development and adult cell homeostasis via the action of nuclear {beta}-catenin. Furthermore, neoplasia of the colorectal epithelium begins with aberrant Wnt/{beta}-catenin signaling. Yet, little is known about how {beta}-catenin generates context-specific transcriptional outcomes. We have previously identified the developmental transcription factor TBX3 as a tissue-specific component of the Wnt/{beta}-catenin nuclear complex during mouse forelimb development. In this study, we show that TBX3 is present and functionally active in human colorectal cancers. TBX3s genomic binding pattern suggests a regulatory role that broadly coincides with that of Wnt/{beta}-catenin. Moreover, proteomics proximity labelling indicated that, during Wnt pathway activation, TBX3 is vicinal to several protein partners, including the transcription factors TCF/LEF and chromatin remodeling complexes which are usually found at Wnt responsive elements. Sequence and structure analysis revealed that TBX3 possesses an exposed Asp-Pro-Phe (NPF) motif predicted by AlphaFold2 Multimer to mediate direct interactions with several Wnt-activated TBX3 partners. Deletion of NPF abrogates TBX3 proximity to these partners and its ability to modulate Wnt-dependent transcription. TBX3 emerges as a key modulator of the oncogenic activity of Wnt/{beta}-catenin in colorectal cancer, and its mechanism of action exposes a novel druggable protein-interaction surface.

developmental biology↗