星形胶质细胞
陶氏病
神经退行性变
生物
自噬
α-突触核蛋白
细胞生物学
袋3
神经科学
病理
医学
帕金森病
疾病
遗传学
中枢神经系统
细胞凋亡
作者
Patrick W. Sheehan,Collin J. Nadarajah,Michael F. Kanan,Jessica N. Patterson,Brenna C Novotny,Jennifer H. Lawrence,Melvin W. King,Logan Brase,Casey E. Inman,Carla M. Yuede,Jiyeon Lee,Tirth K. Patel,Oscar Harari,Bruno A. Benítez,Albert A. Davis,Erik S. Musiek
出处
期刊:Neuron
[Elsevier]
日期:2023-08-01
卷期号:111 (15): 2383-2398.e7
被引量:27
标识
DOI:10.1016/j.neuron.2023.05.006
摘要
The circadian clock protein BMAL1 modulates glial activation and amyloid-beta deposition in mice. However, the effects of BMAL1 on other aspects of neurodegenerative pathology are unknown. Here, we show that global post-natal deletion of Bmal1 in mouse tauopathy or alpha-synucleinopathy models unexpectedly suppresses both tau and alpha-synuclein (αSyn) aggregation and related pathology. Astrocyte-specific Bmal1 deletion is sufficient to prevent both αSyn and tau pathology in vivo and induces astrocyte activation and the expression of Bag3, a chaperone critical for macroautophagy. Astrocyte Bmal1 deletion enhances phagocytosis of αSyn and tau in a Bag3-dependent manner, and astrocyte Bag3 overexpression is sufficient to mitigate αSyn spreading in vivo. In humans, BAG3 is increased in patients with AD and is highly expressed in disease-associated astrocytes (DAAs). Our results suggest that early activation of astrocytes via Bmal1 deletion induces Bag3 to protect against tau and αSyn pathologies, providing new insights into astrocyte-specific therapies for neurodegeneration.
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