A fast Myosin super enhancer dictates muscle fiber phenotype through competitive interactions with Myosin genes

Author:

Dos Santos Matthieu,Backer Stéphanie,Auradé Frédéric,Wong Matthew Man-KinORCID,Wurmser Maud,Pierre Rémi,Langa FrancinaORCID,Do Cruzeiro Marcio,Schmitt Alain,Concordet Jean-PaulORCID,Sotiropoulos Athanassia,Jeffrey Dilworth F.ORCID,Noordermeer DaanORCID,Relaix FrédéricORCID,Sakakibara Iori,Maire PascalORCID

Abstract

AbstractThe contractile properties of adult myofibers are shaped by their Myosin heavy chain isoform content. Here, we identify by snATAC-seq a 42 kb super-enhancer at the locus regrouping the fast Myosin genes. By 4C-seq we show that active fast Myosin promoters interact with this super-enhancer by DNA looping, leading to the activation of a single promoter per nucleus. A rainbow mouse transgenic model of the locus including the super-enhancer recapitulates the endogenous spatio-temporal expression of adult fast Myosin genes. In situ deletion of the super-enhancer by CRISPR/Cas9 editing demonstrates its major role in the control of associated fast Myosin genes, and deletion of two fast Myosin genes at the locus reveals an active competition of the promoters for the shared super-enhancer. Last, by disrupting the organization of fast Myosin, we uncover positional heterogeneity within limb skeletal muscles that may underlie selective muscle susceptibility to damage in certain myopathies.

Funder

AFM-Téléthon

Agence Nationale de la Recherche

INSERM: Institut National de la santé et de la recherche médicale CNRS: centre national de la santé et de la recherche scientifique

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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