STAG2 loss-of-function affects short-range genomic contacts and modulates the basal-luminal transcriptional program of bladder cancer cells

Author:

Richart Laia1,Lapi Eleonora12ORCID,Pancaldi Vera345ORCID,Cuenca-Ardura Mirabai1,Pau Enrique Carrillo-de-Santa1,Madrid-Mencía Miguel345ORCID,Neyret-Kahn Hélène67ORCID,Radvanyi François67,Rodríguez Juan Antonio8,Cuartero Yasmina8,Serra François3ORCID,Le Dily François8ORCID,Valencia Alfonso39,Marti-Renom Marc A891011ORCID,Real Francisco X1211

Affiliation:

1. Epithelial Carcinogenesis Group, Spanish National Cancer Research Centre (CNIO), 28029 Madrid, Spain

2. Center for Biomedical Research Network (CIBERONC), 28029 Madrid, Spain

3. Barcelona Supercomputing Center (BSC), 08034 Barcelona, Spain

4. Centre de Recherches en Cancérologie de Toulouse (CRCT), UMR1037 Inserm, ERL5294 CNRS, 31037 Toulouse, France

5. University Paul Sabatier III, Toulouse, France

6. Institut Curie, PSL Research University, CNRS, UMR144, Equipe Labellisée Ligue Contre le Cancer, 75005 Paris, France

7. Sorbonne Université, UPMC Université Paris 06, CNRS, UMR144, 75005 Paris, France

8. CNAG-CRG, Centre for Genomic Regulation (CRG), Barcelona Institute of Science and Technology (BIST), 08028 Barcelona, Spain

9. Institució Catalana de Recerca i Estudis Avançats (ICREA), 08010 Barcelona, Spain

10. Centre for Genomic Regulation (CRG), Barcelona Institute of Science and Technology (BIST), 08003 Barcelona, Spain

11. Departament de Ciències Experimentals i de la Salut, Universitat Pompeu Fabra (UPF), 08003 Barcelona, Spain

Abstract

Abstract Cohesin exists in two variants containing STAG1 or STAG2. STAG2 is one of the most mutated genes in cancer and a major bladder tumor suppressor. Little is known about how its inactivation contributes to tumorigenesis. Here, we analyze the genomic distribution of STAG1 and STAG2 and perform STAG2 loss-of-function experiments using RT112 bladder cancer cells; we then analyze the genomic effects by integrating gene expression and chromatin interaction data. Functional compartmentalization exists between the cohesin complexes: cohesin-STAG2 displays a distinctive genomic distribution and mediates short and mid-ranged interactions that engage genes at higher frequency than those established by cohesin-STAG1. STAG2 knockdown results in down-regulation of the luminal urothelial signature and up-regulation of the basal transcriptional program, mirroring differences between STAG2-high and STAG2-low human bladder tumors. This is accompanied by rewiring of DNA contacts within topological domains, while compartments and domain boundaries remain refractive. Contacts lost upon depletion of STAG2 are assortative, preferentially occur within silent chromatin domains, and are associated with de-repression of lineage-specifying genes. Our findings indicate that STAG2 participates in the DNA looping that keeps the basal transcriptional program silent and thus sustains the luminal program. This mechanism may contribute to the tumor suppressor function of STAG2 in the urothelium.

Publisher

Oxford University Press (OUP)

Subject

Genetics

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