CD8+ T cells induce interferon-responsive oligodendrocytes and microglia in white matter aging

Abstract:

AbstractA hallmark of nervous system aging is a decline of white matter volume and function, but the underlying mechanisms leading to white matter pathology are unknown. In the present study, we found age-related alterations of oligodendrocyte cell state with a reduction in total oligodendrocyte density in aging murine white matter. Using single-cell RNA-sequencing, we identified interferon (IFN)-responsive oligodendrocytes, which localize in proximity to CD8+ T cells in aging white matter. Absence of functional lymphocytes decreased the number of IFN-responsive oligodendrocytes and rescued oligodendrocyte loss, whereas T-cell checkpoint inhibition worsened the aging response. In addition, we identified a subpopulation of lymphocyte-dependent, IFN-responsive microglia in the vicinity of the CD8+ T cells in aging white matter. In summary, we provide evidence that CD8+ T-cell-induced, IFN-responsive oligodendrocytes and microglia are important modifiers of white matter aging.

SEEK ID: https://goeseek.gwdguser.de/publications/12

DOI: 10.1038/s41593-022-01183-6

Projects: TRR 274: Checkpoints of Central Nervous System Recovery

Publication type: Journal Article

Journal: Nature Neuroscience

Book Title: Nature Neuroscience

Publisher: Springer Science and Business Media LLC

Citation: Nat Neurosci 25(11):1446-1457.

Date Published: 24th Oct 2022

Registered Mode: by DOI

Authors: Tuğberk Kaya, Nicola Mattugini, Lu Liu, Hao Ji, Ludovico Cantuti-Castelvetri, Jianping Wu, Martina Schifferer, Janos Groh, Rudolf Martini, Simon Besson-Girard, Seiji Kaji, Arthur Liesz, Ozgun Gokce, Mikael Simons

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Kaya, T., Mattugini, N., Liu, L., Ji, H., Cantuti-Castelvetri, L., Wu, J., Schifferer, M., Groh, J., Martini, R., Besson-Girard, S., Kaji, S., Liesz, A., Gokce, O., & Simons, M. (2022). CD8+ T cells induce interferon-responsive oligodendrocytes and microglia in white matter aging. In Nature Neuroscience (Vol. 25, Issue 11, pp. 1446–1457). Springer Science and Business Media LLC. https://doi.org/10.1038/s41593-022-01183-6
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Created: 3rd Aug 2026 at 12:17

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