Dynamic estrogen receptor interactomes control estrogen-responsive trefoil Factor (TFF) locus cell-specific activities

动态雌激素受体相互作用组控制雌激素反应性三叶因子 (TFF) 基因座细胞特异性活性

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作者:Justine Quintin, Christine Le Péron, Gaëlle Palierne, Maud Bizot, Stéphanie Cunha, Aurélien A Sérandour, Stéphane Avner, Catherine Henry, Frédéric Percevault, Marc-Antoine Belaud-Rotureau, Sébastien Huet, Erwan Watrin, Jérôme Eeckhoute, Vincent Legagneux, Gilles Salbert, Raphaël Métivier

Abstract

Estradiol signaling is ideally suited for analyzing the molecular and functional linkages between the different layers of information directing transcriptional regulations: the DNA sequence, chromatin modifications, and the spatial organization of the genome. Hence, the estrogen receptor (ER) can bind at a distance from its target genes and engages timely and spatially coordinated processes to regulate their expression. In the context of the coordinated regulation of colinear genes, identifying which ER binding sites (ERBSs) regulate a given gene still remains a challenge. Here, we investigated the coordination of such regulatory events at a 2-Mb genomic locus containing the estrogen-sensitive trefoil factor (TFF) cluster of genes in breast cancer cells. We demonstrate that this locus exhibits a hormone- and cohesin-dependent reduction in the plasticity of its three-dimensional organization that allows multiple ERBSs to be dynamically brought to the vicinity of estrogen-sensitive genes. Additionally, by using triplex-forming oligonucleotides, we could precisely document the functional links between ER engagement at given ERBSs and the regulation of particular genes. Hence, our data provide evidence of a formerly suggested cooperation of enhancers toward gene regulation and also show that redundancy between ERBSs can occur.

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