Oligodendrocyte-encoded Kir4.1 function is required for axonal integrity.
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Authors
Cruz-Herranz, Andrés
Ben Haim, Lucile
Cordano, Christian
Shiow, Lawrence R
Kelley, Kevin W
Sadowski, Boguslawa
Timmons, Garrett
Pröbstel, Anne-Katrin
Wright, Jackie N
Sin, Jung Hyung
Devereux, Michael
Morrison, Daniel E
Chang, Sandra M
Sabeur, Khalida
Green, Ari J
Franklin, Robin Jm
Publication Date
2018-09-11Journal Title
Elife
ISSN
2050-084X
Publisher
eLife Sciences Publications, Ltd
Volume
7
Language
eng
Type
Article
Physical Medium
Electronic
Metadata
Show full item recordCitation
Schirmer, L., Möbius, W., Zhao, C., Cruz-Herranz, A., Ben Haim, L., Cordano, C., Shiow, L. R., et al. (2018). Oligodendrocyte-encoded Kir4.1 function is required for axonal integrity.. Elife, 7 https://doi.org/10.7554/eLife.36428
Abstract
Glial support is critical for normal axon function and can become dysregulated in white matter (WM) disease. In humans, loss-of-function mutations of KCNJ10, which encodes the inward-rectifying potassium channel KIR4.1, causes seizures and progressive neurological decline. We investigated Kir4.1 functions in oligodendrocytes (OLs) during development, adulthood and after WM injury. We observed that Kir4.1 channels localized to perinodal areas and the inner myelin tongue, suggesting roles in juxta-axonal K+ removal. Conditional knockout (cKO) of OL-Kcnj10 resulted in late onset mitochondrial damage and axonal degeneration. This was accompanied by neuronal loss and neuro-axonal dysfunction in adult OL-Kcnj10 cKO mice as shown by delayed visual evoked potentials, inner retinal thinning and progressive motor deficits. Axon pathologies in OL-Kcnj10 cKO were exacerbated after WM injury in the spinal cord. Our findings point towards a critical role of OL-Kir4.1 for long-term maintenance of axonal function and integrity during adulthood and after WM injury.
Keywords
Kir4.1 (KCNJ10), mouse, neurobiology, neurodegeneration, neuroscience, oligodendrocytes, visual System, white matter, Animals, Axons, Humans, Leukoencephalopathies, Mice, Mice, Knockout, Neuroglia, Neurons, Oligodendroglia, Potassium Channels, Inwardly Rectifying, Seizures, Spinal Cord
Sponsorship
Medical Research Council (MC_PC_12009)
Identifiers
External DOI: https://doi.org/10.7554/eLife.36428
This record's URL: https://www.repository.cam.ac.uk/handle/1810/285438
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