LATS1 controls CTCF chromatin occupancy and hormonal response of 3D-grown breast cancer cells

Author:

Ramírez-Cuéllar JulietaORCID,Ferrari RobertoORCID,Sanz Rosario T,Valverde-Santiago Marta,García-García Judith,Nacht A Silvina,Castillo David,Le Dily Francois,Neguembor Maria VictoriaORCID,Malatesta MarcoORCID,Bonnin Sarah,Marti-Renom Marc A,Beato MiguelORCID,Vicent Guillermo PORCID

Abstract

AbstractThe cancer epigenome has been studied in cells cultured in two-dimensional (2D) monolayers, but recent studies highlight the impact of the extracellular matrix and the three-dimensional (3D) environment on multiple cellular functions. Here, we report the physical, biochemical, and genomic differences between T47D breast cancer cells cultured in 2D and as 3D spheroids. Cells within 3D spheroids exhibit a rounder nucleus with less accessible, more compacted chromatin, as well as altered expression of ~2000 genes, the majority of which become repressed. Hi-C analysis reveals that cells in 3D are enriched for regions belonging to the B compartment, have decreased chromatin-bound CTCF and increased fusion of topologically associating domains (TADs). Upregulation of the Hippo pathway in 3D spheroids results in the activation of the LATS1 kinase, which promotes phosphorylation and displacement of CTCF from DNA, thereby likely causing the observed TAD fusions. 3D cells show higher chromatin binding of progesterone receptor (PR), leading to an increase in the number of hormone-regulated genes. This effect is in part mediated by LATS1 activation, which favors cytoplasmic retention of YAP and CTCF removal.

Funder

Ministerio de Ciencia e Innovación

EC | European Research Council

MEC | Consejo Superior de Investigaciones Científicas

Italian Ministry for University and Research

Centro de Excelencia Severo Ochoa

Publisher

Springer Science and Business Media LLC

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