Topoisomerase VI participates in an insulator-like function that prevents H3K9me2 spreading

Author:

Méteignier Louis-Valentin1,Lecampion Cécile1ORCID,Velay Florent1,Vriet Cécile12ORCID,Dimnet Laura1ORCID,Rougée Martin34ORCID,Breuer Christian5,Soubigou-Taconnat Ludivine67,Sugimoto Keiko5,Barneche Fredy3ORCID,Laloi Christophe1ORCID

Affiliation:

1. BIAM, UMR 7265, Aix Marseille Univ, CEA, CNRS, Marseille, F-13009 France

2. UMR CNRS 7267, Laboratoire Ecologie et Biologie des Interactions, Université de Poitiers, Poitiers, France

3. Département de Biologie, Ecole Normale Supérieure, CNRS, Paris Sciences and Letters Research University, F-75005 Paris, France

4. Université Paris-Sud, Université Paris-Saclay, 91405 Orsay, France

5. Center for Sustainable Resource Science, RIKEN, Yokohama, 230-0045, Japan

6. Institute of Plant Sciences Paris Saclay (IPS2), Université Paris-Saclay, CNRS, INRAE, Univ Evry, Orsay, 91405 France

7. IPS2, Université Paris Cité, CNRS, INRAE, Orsay, 91405 France

Abstract

The organization of the genome into transcriptionally active and inactive chromatin domains requires well-delineated chromatin boundaries and insulator functions in order to maintain the identity of adjacent genomic loci with antagonistic chromatin marks and functionality. In plants that lack known chromatin insulators, the mechanisms that prevent heterochromatin spreading into euchromatin remain to be identified. Here, we show that DNA Topoisomerase VI participates in a chromatin boundary function that safeguards the expression of genes in euchromatin islands within silenced heterochromatin regions. While some transposable elements are reactivated in mutants of the Topoisomerase VI complex, genes insulated in euchromatin islands within heterochromatic regions of the Arabidopsis thaliana genome are specifically down-regulated. H3K9me2 levels consistently increase at euchromatin island loci and decrease at some transposable element loci. We further show that Topoisomerase VI physically interacts with S-adenosylmethionine synthase methionine adenosyl transferase 3 (MAT3), which is required for H3K9me2. A Topoisomerase VI defect affects MAT3 occupancy on heterochromatic elements and its exclusion from euchromatic islands, thereby providing a possible mechanistic explanation to the essential role of Topoisomerase VI in the delimitation of chromatin domains.

Funder

Agence Nationale de la Recherche

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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