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Betaine restores epigenetic control and supports neuronal mitochondria in the cuprizone mouse model of multiple sclerosis

Authors :
Naveen K. Singhal
Sarah Sternbach
Sheila Fleming
Kholoud Alkhayer
John Shelestak
Daniela Popescu
Alyx Weaver
Robert Clements
Brandi Wasek
Teodoro Bottiglieri
Ernest J. Freeman
Jennifer McDonough
Source :
Epigenetics, Vol 15, Iss 8, Pp 871-886 (2020)
Publication Year :
2020
Publisher :
Taylor & Francis Group, 2020.

Abstract

Methionine metabolism is dysregulated in multiple sclerosis (MS). The methyl donor betaine is depleted in the MS brain where it is linked to changes in levels of histone H3 trimethylated on lysine 4 (H3K4me3) and mitochondrial impairment. We investigated the effects of replacing this depleted betaine in the cuprizone mouse model of MS. Supplementation with betaine restored epigenetic control and alleviated neurological disability in cuprizone mice. Betaine increased the methylation potential (SAM/SAH ratio), levels of H3K4me3, enhanced neuronal respiration, and prevented axonal damage. We show that the methyl donor betaine and the betaine homocysteine methyltransferase (BHMT) enzyme can act in the nucleus to repair epigenetic control and activate neuroprotective transcriptional programmes. ChIP-seq data suggest that BHMT acts on chromatin to increase the SAM/SAH ratio and histone methyltransferase activity locally to increase H3K4me3 and activate gene expression that supports neuronal energetics. These data suggest that the methyl donor betaine may provide neuroprotection in MS where mitochondrial impairment damages axons and causes disability.

Details

Language :
English
ISSN :
15592294 and 15592308
Volume :
15
Issue :
8
Database :
Directory of Open Access Journals
Journal :
Epigenetics
Publication Type :
Academic Journal
Accession number :
edsdoj.1e99bbf5df564768825be462cd0c5a7e
Document Type :
article
Full Text :
https://doi.org/10.1080/15592294.2020.1735075