DeSUMOylation of chromatin-bound proteins limits the rapid transcriptional reprogramming induced by daunorubicin in acute myeloid leukemias

Author:

Boulanger Mathias1ORCID,Aqrouq Mays1ORCID,Tempé Denis1,Kifagi Chamseddine1,Ristic Marko1,Akl Dana1,Hallal Rawan1,Carusi Aude1,Gabellier Ludovic12,de Toledo Marion1ORCID,Sigurdsson Jon-Otti3,Kaoma Tony4,Andrieu-Soler Charlotte15,Forné Thierry1,Soler Eric15,Hicheri Yosr2,Gueret Elise6,Vallar Laurent4,Olsen Jesper V3,Cartron Guillaume12,Piechaczyk Marc1,Bossis Guillaume1ORCID

Affiliation:

1. IGMM, Univ. Montpellier, CNRS , Montpellier , France

2. Service d’Hématologie Clinique, CHU de Montpellier , 80 Avenue Augustin Fliche , 34091 Montpellier , France

3. Proteomics Program, Novo Nordisk Foundation Center For Protein Research, Faculty of Health and Medical Sciences, University of Copenhagen , Blegdamsvej 3B , DK-2200  Copenhagen , Denmark

4. Genomics Research Unit, Luxembourg Institute of Health , 84, Val Fleuri , L-1526  Luxembourg , Luxembourg

5. Université de Paris, Laboratory of Excellence GR-Ex , Paris, France

6. MGX-Montpellier GenomiX, Univ. Montpellier, CNRS, INSERM , Montpellier , France

Abstract

Abstract Genotoxicants have been used for decades as front-line therapies against cancer on the basis of their DNA-damaging actions. However, some of their non-DNA-damaging effects are also instrumental for killing dividing cells. We report here that the anthracycline Daunorubicin (DNR), one of the main drugs used to treat Acute Myeloid Leukemia (AML), induces rapid (3 h) and broad transcriptional changes in AML cells. The regulated genes are particularly enriched in genes controlling cell proliferation and death, as well as inflammation and immunity. These transcriptional changes are preceded by DNR-dependent deSUMOylation of chromatin proteins, in particular at active promoters and enhancers. Surprisingly, inhibition of SUMOylation with ML-792 (SUMO E1 inhibitor), dampens DNR-induced transcriptional reprogramming. Quantitative proteomics shows that the proteins deSUMOylated in response to DNR are mostly transcription factors, transcriptional co-regulators and chromatin organizers. Among them, the CCCTC-binding factor CTCF is highly enriched at SUMO-binding sites found in cis-regulatory regions. This is notably the case at the promoter of the DNR-induced NFKB2 gene. DNR leads to a reconfiguration of chromatin loops engaging CTCF- and SUMO-bound NFKB2 promoter with a distal cis-regulatory region and inhibition of SUMOylation with ML-792 prevents these changes.

Funder

CNRS

Fondation de France

FRM

Fondation ARC

Montpellier University Hospital

Montpellier SIRIC

Languedoc-Roussillon Region

France Génomique National infrastructure

Novo Nordisk Foundation

Danish Cancer Society

Publisher

Oxford University Press (OUP)

Subject

Genetics

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