Enhancer-driven 3D chromatin domain folding modulates transcription in human mammary tumor cells

Author:

Kocanova Silvia1,Raynal Flavien1ORCID,Goiffon Isabelle1ORCID,Oksuz Betul Akgol2ORCID,Baú Davide3,Kamgoué Alain1ORCID,Cantaloube Sylvain1,Zhan Ye2ORCID,Lajoie Bryan2,Marti-Renom Marc A3456ORCID,Dekker Job27ORCID,Bystricky Kerstin18ORCID

Affiliation:

1. Molecular, Cellular and Developmental Biology Unit (MCD), Centre de Biologie Integrative (CBI), University of Toulouse, UPS, CNRS, Toulouse, France

2. Department of Systems Biology, University of Massachusetts Chan Medical School

3. Centre Nacional d’Anàlisi Genòmica (CNAG), Barcelona, Spain

4. Genome Biology Program, Centre de Regulació Genòmica (CRG), Barcelona, Spain

5. Universitat Pompeu Fabra (UPF), Barcelona, Spain

6. Institució Catalana de Recerca i Estudis Avançats (ICREA), Barcelona, Spain

7. Howard Hughes Medical Institute, Chevy Chase, MD, USA

8. Institut Universitaire de France (IUF), Paris, France

Abstract

The genome is organized in functional compartments and structural domains at the sub-megabase scale. How within these domains interactions between numerous cis-acting enhancers and promoters regulate transcription remains an open question. Here, we determined chromatin folding and composition over several hundred kb around estrogen-responsive genes in human breast cancer cell lines after hormone stimulation. Modeling of 5C data at 1.8 kb resolution was combined with quantitative 3D analysis of multicolor FISH measurements at 100 nm resolution and integrated with ChIP-seq data on transcription factor binding and histone modifications. We found that rapid estradiol induction of the progesterone gene expression occurs in the context of preexisting, cell type-specific chromosomal architectures encompassing the 90 kb progesterone gene coding region and an enhancer-spiked 5′ 300 kb upstream genomic region. In response to estradiol, interactions between estrogen receptor α (ERα) bound regulatory elements are reinforced. Whereas initial enhancer–gene contacts coincide with RNA Pol 2 binding and transcription initiation, sustained hormone stimulation promotes ERα accumulation creating a regulatory hub stimulating transcript synthesis. In addition to implications for estrogen receptor signaling, we uncover that preestablished chromatin architectures efficiently regulate gene expression upon stimulation without the need for de novo extensive rewiring of long-range chromatin interactions.

Funder

HFSPO

Agence Nationale de la Recherche

Ministerio de Ciencia e Innovación

HHS | NIH | National Human Genome Research Institute

Publisher

Life Science Alliance, LLC

Subject

Health, Toxicology and Mutagenesis,Plant Science,Biochemistry, Genetics and Molecular Biology (miscellaneous),Ecology

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