Nonvesicular lipid transfer drives myelin growth in the central nervous system

Abstract:

AbstractOligodendrocytes extend numerous cellular processes that wrap multiple times around axons to generate lipid-rich myelin sheaths. Myelin biogenesis requires an enormously productive biosynthetic machinery for generating and delivering these large amounts of newly synthesized lipids. Yet, a complete understanding of this process remains elusive. Utilizing volume electron microscopy, we demonstrate that the oligodendroglial endoplasmic reticulum (ER) is enriched in developing myelin, extending into and making contact with the innermost myelin layer where growth occurs. We explore the possibility of transfer of lipids from the ER to myelin, and find that the glycolipid transfer protein (GLTP), implicated in nonvesicular lipid transport, is highly enriched in the growing myelin sheath. Mice with a specific knockout of Gltp in oligodendrocytes exhibit ER pathology, hypomyelination and a decrease in myelin glycolipid content. In summary, our results demonstrate a role for nonvesicular lipid transport in CNS myelin growth, revealing a cellular pathway in developmental myelination.

SEEK ID: https://goeseek.gwdguser.de/publications/31

DOI: 10.1038/s41467-024-53511-y

Projects: TRR 274: Checkpoints of Central Nervous System Recovery

Publication type: Journal Article

Journal: Nature Communications

Book Title: Nature Communications

Publisher: Springer Science and Business Media LLC

Citation: Nat Commun 15(1):9756.

Date Published: 11th Nov 2024

Registered Mode: by DOI

Authors: Jianping Wu, Georg Kislinger, Jerome Duschek, Ayşe Damla Durmaz, Benedikt Wefers, Ruoqing Feng, Karsten Nalbach, Wolfgang Wurst, Christian Behrends, Martina Schifferer, Mikael Simons

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Wu, J., Kislinger, G., Duschek, J., Durmaz, A. D., Wefers, B., Feng, R., Nalbach, K., Wurst, W., Behrends, C., Schifferer, M., & Simons, M. (2024). Nonvesicular lipid transfer drives myelin growth in the central nervous system. In Nature Communications (Vol. 15, Issue 1). Springer Science and Business Media LLC. https://doi.org/10.1038/s41467-024-53511-y
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Created: 6th Aug 2026 at 13:11

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