BMAL1 loss in oligodendroglia contributes to abnormal myelination and sleep

Daniela Rojo(Stanford University), Louisa Dal Cengio(Stanford University), Anna Badner(Stanford University), Samuel Kim(Stanford University), Noriaki Sakai(Stanford University), Jacob J. Greene(Stanford University), Tess Dierckx(Stanford University), Lindsey Catherine Mehl(Palo Alto University), Ella Eisinger(Stanford University), Julia Ransom(Stanford University), Caroline Arellano-Garcia(Palo Alto University), Mohammad E. Gumma(Stanford University), Rebecca L. Soyk(Stanford University), Cheyanne M. Lewis(Palo Alto University), Mable Lam(Stanford University), Maya K. Weigel(Palo Alto University), Valentina Martínez Damonte(Stanford University), Belgin Yalçın(Stanford University), Samuel E. Jones(University of Helsinki), Hanna M. Ollila(Broad Institute), Seiji Nishino(Stanford University), Erin M. Gibson(Stanford Medicine)
Neuron
August 31, 2023
Cited by 42Open Access
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Abstract

Myelination depends on the maintenance of oligodendrocytes that arise from oligodendrocyte precursor cells (OPCs). We show that OPC-specific proliferation, morphology, and BMAL1 are time-of-day dependent. Knockout of Bmal1 in mouse OPCs during development disrupts the expression of genes associated with circadian rhythms, proliferation, density, morphology, and migration, leading to changes in OPC dynamics in a spatiotemporal manner. Furthermore, these deficits translate into thinner myelin, dysregulated cognitive and motor functions, and sleep fragmentation. OPC-specific Bmal1 loss in adulthood does not alter OPC density at baseline but impairs the remyelination of a demyelinated lesion driven by changes in OPC morphology and migration. Lastly, we show that sleep fragmentation is associated with increased prevalence of the demyelinating disorder multiple sclerosis (MS), suggesting a link between MS and sleep that requires further investigation. These findings have broad mechanistic and therapeutic implications for brain disorders that include both myelin and sleep phenotypes.


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