Tau病理学
神经科学
病态的
τ蛋白
基因亚型
小脑
选择性拼接
海马体
陶氏病
生物
人脑
疾病
阿尔茨海默病
心理学
病理
医学
神经退行性变
遗传学
基因
作者
Dah‐eun Chloe Chung,Xue Deng,Hari Krishna Yalamanchili,Jean‐Pierre Revelli,Alexander Han,Bakhos Tadros,Ronald Richman,Michelle Dias,Fatemeh Alavi Naini,Steven Boeynaems,Bradley T. Hyman,Huda Y. Zoghbi
出处
期刊:
[Cold Spring Harbor Laboratory]
日期:2024-07-31
被引量:15
标识
DOI:10.1101/2024.07.30.605685
摘要
. However, other brain regions like the cerebellum and brain stem remain largely intact despite the universal expression of tau throughout the brain. Here, we found that an understudied splice isoform of tau termed "big tau" is significantly more abundant in the brain regions less vulnerable to tau pathology compared to tau pathology-vulnerable regions. We used various cellular and animal models to demonstrate that big tau possesses multiple properties that can resist AD-related pathological changes. Importantly, human AD patients show a higher expression level of pathology-resisting big tau in the cerebellum, the brain region spared from tau pathology. Our study examines the unique properties of big tau, expanding our current understanding of tau pathophysiology. Altogether, our data suggest that alternative splicing to favor big tau is a viable strategy to modulate tau pathology.
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