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  Downregulated expression of lactate dehydrogenase in adult oligodendrocytes and its implication for the transfer of glycolysis products to axons

Späte, E., Zhou, B., Sun, T., Kusch, K., Asadollahi, E., Siems, S. B., et al. (2024). Downregulated expression of lactate dehydrogenase in adult oligodendrocytes and its implication for the transfer of glycolysis products to axons. Glia. doi:10.1002/glia.24533.

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Glia - 2024 - Späte - Downregulated expression of lactate dehydrogenase in adult oligodendrocytes and its implication for.pdf (Publisher version), 22MB
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Glia - 2024 - Späte
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 Creators:
Späte, Erik1, Author           
Zhou, Baoyu1, Author           
Sun, Ting1, Author           
Kusch, Kathrin1, Author           
Asadollahi, Ebrahim1, Author           
Siems, Sophie B.1, Author           
Depp, Constanze1, Author           
Werner, Hauke B.1, Author           
Saher, Gesine1, Author           
Hirrlinger, Johannes1, Author           
Möbius, Wiebke1, Author           
Nave, Klaus-Armin1, Author           
Göbbels, Sandra1, Author           
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1Department of Neurogenetics, Max Planck Institute for Multidisciplinary Sciences, Max Planck Society, ou_3350301              

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 Abstract: Oligodendrocytes and astrocytes are metabolically coupled to neuronal compartments. Pyruvate and lactate can shuttle between glial cells and axons via monocarboxylate transporters. However, lactate can only be synthesized or used in metabolic reactions with the help of lactate dehydrogenase (LDH), a tetramer of LDHA and LDHB subunits in varying compositions. Here we show that mice with a cell type-specific disruption of both Ldha and Ldhb genes in oligodendrocytes lack a pathological phenotype that would be indicative of oligodendroglial dysfunctions or lack of axonal metabolic support. Indeed, when combining immunohistochemical, electron microscopical, and in situ hybridization analyses in adult mice, we found that the vast majority of mature oligodendrocytes lack detectable expression of LDH. Even in neurodegenerative disease models and in mice under metabolic stress LDH was not increased. In contrast, at early development and in the remyelinating brain, LDHA was readily detectable in immature oligodendrocytes. Interestingly, by immunoelectron microscopy LDHA was particularly enriched at gap junctions formed between adjacent astrocytes and at junctions between astrocytes and oligodendrocytes. Our data suggest that oligodendrocytes metabolize lactate during development and remyelination. In contrast, for metabolic support of axons mature oligodendrocytes may export their own glycolysis products as pyruvate rather than lactate. Lacking LDH, these oligodendrocytes can also “funnel” lactate through their “myelinic” channels between gap junction-coupled astrocytes and axons without metabolizing it. We suggest a working model, in which the unequal cellular distribution of LDH in white matter tracts facilitates a rapid and efficient transport of glycolysis products among glial and axonal compartments.

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Language(s): eng - English
 Dates: 2024-04-08
 Publication Status: Published online
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 Rev. Type: Peer
 Identifiers: DOI: 10.1002/glia.24533
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Project name : MyeliNANO
Grant ID : 671048
Funding program : Horizon 2020 (H2020)
Funding organization : European Commission (EC)

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Title: Glia
Source Genre: Journal
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Pages: - Volume / Issue: - Sequence Number: - Start / End Page: - Identifier: ISSN: 0894-1491
ISSN: 1098-1136