bioRxiv · 10.1101/362814
Cell-autonomous regulation of astrocyte activation by the circadian clock protein BMAL1
Abstract
Circadian clock dysfunction is a common symptom of aging and neurodegenerative diseases, though its impact on brain health is poorly understood. Astrocyte activation occurs in response to diverse insults, and plays a critical role in brain health and disease. We report that the core clock protein BMAL1 regulates astrogliosis in a synergistic manner via a cell-autonomous mechanism, and via a lesser non-cell-autonomous signal from neurons. Astrocyte-specific Bmal1 deletion induces astrocyte activation in vitro and in vivo, mediated in part by suppression of glutathione-s-transferase signaling. Functionally, loss of Bmal1 in astrocytes promotes neuronal death in vitro. Our results demonstrate that the core clock protein BMAL1 regulates astrocyte activation and function in vivo, elucidating a novel mechanism by which the circadian clock could influence many aspects of brain function and neurologic disease.
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Lananna, B. V., Nadarajah, C. J., Izumo, M., Cedeno, M. R., Xiong, D. D., Dimitry, J., Tso, C. F., McKee, C. A., Griffin, P., Sheehan, P. W., Haspel, J. A., Barres, B. A., Liddelow, S. A., Takahashi, J. S., Karatsoreos, I. N., Musiek, E. S.. 2018-07-05. Cell-autonomous regulation of astrocyte activation by the circadian clock protein BMAL1. https://doi.org/10.1101/362814
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