Functional organization of an Mbp enhancer exposes striking transcriptional regulatory diversity within myelinating glia

Nancy Dionne, Samar Dib, Bente Finsen, Eric Denarier, Tanja Kuhlmann, Régen Drouin, Maia Kokoeva, Thomas J Hudson, Kathy Siminovitch, Hana C Friedman, Alan C Peterson

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    Abstrakt

    In mammals, large caliber axons are ensheathed by myelin, a glial specialization supporting axon integrity and conferring accelerated and energy-efficient action potential conduction. Myelin basic protein (MBP) is required for normal myelin elaboration with maximal mbp transcription in oligodendrocytes requiring the upstream M3 enhancer. To further characterize the mechanism regulating mbp transcription, we defined M3 structure/function relationships by evaluating its evolutionary conservation, DNA footprints and the developmental programing conferred in mice by M3 derivatives. Multiple M3 regulatory element combinations were found to drive expression in oligodendrocytes and Schwann cells with a minimal 129 bp sequence conferring expression in oligodendrocytes throughout myelin elaboration, maintenance and repair. Unexpectedly, M3 derivatives conferred markedly different spatial and temporal expression programs thus illuminating striking transcriptional heterogeneity within post-mitotic oligodendrocytes. Finally, one M3 derivative engaged only during primary myelination, not during adult remyelination, demonstrating that transcriptional regulation in the two states is not equivalent. GLIA 2015.

    OriginalsprogEngelsk
    TidsskriftGlia
    Vol/bind64
    Udgave nummer1
    Sider (fra-til)175–194
    ISSN0894-1491
    DOI
    StatusUdgivet - jan. 2016

    Bibliografisk note

    Article first published online: 28 OCT 2015

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