The antiviral Interferon pathway drives astrocyte aging and motor decline
Labarta-Bajo, L.; Thanawalla, A. R.; Gutierrez, I. L.; Lei Soe, S. M.; Chick, B. Y.; Andritsogianni, I.; Metanat, S.; Hargreaves, D. C.; Kaech, S. M.; Azim, E.; Allen, N. J.
Show abstract
Aging encompasses low-level inflammation and motor decline. Astrocytes are neuroregulatory glial cells that change in aging, particularly in the cerebellum, which is essential for movement coordination. Regulation and functionality of cerebellar astrocytes in aging is unknown. We show that antiviral type I Interferons (IFN-I) drive motor deficits and regional astrocyte aging. Transcriptomics reveal that cerebellar astrocytes, but not cortical, exhibit an antiviral state that intensifies with age, with increased expression of Stat1. Aged mice display motor deficits similar to humans that improve after peripheral IFN-I receptor neutralization, whereas astrocyte Stat1 induces motor deficits during chronic inflammation in adults. While strong systemic inflammation induces astrocyte antiviral state, in aging, chromatin de-repression of Stat1 and nucleotide sensors in cerebellar astrocytes amplifies local IFN-I signaling. We identify functional interaction between a classical immune pathway and astrocytes, representing an actionable strategy to preserve motor function in aging.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Cell type-specific aging clocks to quantify aging and rejuvenation in regenerative regions of the brain 97%
- Aging is associated with a systemic length-driven transcriptome imbalance 97%
- Heterochronic parabiosis reprograms the mouse brain transcriptome by shifting aging signatures in multiple cell types 96%
Similar papers in this journal
- Spatiotemporal analysis of gene expression in the human dentate gyrus reveals age-associated changes in cellular maturation and neuroinflammation 96%
- The immune landscape of murine skeletal muscle regeneration and aging 96%
- Inflammaging in aged tissues drives remodeling of the CD8+ T cell compartment 95%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.