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Mediator MED23 controls oligodendrogenesis and myelination by modulating Sp1/P300-directed gene programs. | LitMetric

Mediator MED23 controls oligodendrogenesis and myelination by modulating Sp1/P300-directed gene programs.

Cell Discov

State Key Laboratory of Genetic Engineering, School of Life Sciences and Zhongshan Hospital, Fudan University, Shanghai, China.

Published: October 2024

AI Article Synopsis

  • The study investigates how the Mediator Med23 subunit affects myelination and regeneration, connecting mutations to conditions like intellectual disability and white matter defects.
  • A mouse model with a specific Med23 mutation shows signs of white matter thinning and cognitive decline similar to human conditions, emphasizing Med23's role in brain health.
  • Research revealed that Med23 influences gene programs for oligodendrocyte development and cholesterol metabolism, crucial for proper myelination, by regulating the binding of proteins to specific genes.

Article Abstract

Gaining the molecular understanding for myelination development and regeneration has been a long-standing goal in neurological research. Mutations in the transcription cofactor Mediator Med23 subunit are often associated with intellectual disability and white matter defects, although the precise functions and mechanisms of Mediator in myelination remain unclear. In this study, we generated a mouse model carrying an Med23 mutation that has been identified in a patient with hypomyelination features. The MED23 mouse model develops white matter thinning and cognitive decline, mimicking common clinical phenotypes. Further, oligodendrocyte-lineage specific Med23 knockout mice verified the important function of MED23 in regulating central nervous system myelination and postinjury remyelination. Utilizing the in vitro cellular differentiation assay, we found that the oligodendrocyte progenitor cells, either carrying the Q649R mutation or lacking Med23, exhibit significant deficits in their capacity to differentiate into mature oligodendrocytes. Gene profiling combined with reporter assays demonstrated that Mediator Med23 controls Sp1-directed gene programs related to oligodendrocyte differentiation and cholesterol metabolism. Integrative analysis demonstrated that Med23 modulates the P300 binding to Sp1-targeted genes, thus orchestrating the H3K27 acetylation and enhancer activation for the oligodendrocyte lineage progression. Collectively, our findings identified the critical role for the Mediator Med23 in oligodendrocyte fate determination and provide mechanistic insights into the myelination pathogenesis associated with MED23 mutations.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11473658PMC
http://dx.doi.org/10.1038/s41421-024-00730-8DOI Listing

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