失智症
突变
神经科学
痴呆
降级(电信)
遗传学
生物
医学
神经退行性变
癌症研究
生物信息学
细胞生物学
阿尔茨海默病
C9orf72
额颞叶变性
发病机制
自噬
τ蛋白
化学
疾病
作者
Farzaneh S. Mirfakhar,Jacob A. Marsh,Chihiro Sato,Kylie J. Schache,Miguel Minaya,Roland E. Dolle,Stephen C. Pak,Gary A. Silverman,David H. Perlmutter,Shannon L Macauley,Celeste M. Karch
标识
DOI:10.1038/s41467-026-70473-5
摘要
Tau accumulates in a group of neurodegenerative diseases known as tauopathies. A prevailing hypothesis has been that Tau degradation is impaired due to an age-related imbalance in the autophagy-lysosome pathway, but whether these defects are a cause or consequence of Tau accumulation remains unclear. Here we show that a disease-causing mutation in the MAPT gene, which encodes Tau, p.R406W, is sufficient to disrupt multiple steps of the autophagy-lysosome pathway in human neurons. Using Airyscan super-resolution imaging, we find that mutant Tau neurons accumulate Tau and phosphorylated Tau in dysfunctional lysosomes, exhibit reduced lysosome motility, impaired fusion of autophagosomes and lysosomes, and increased undegraded cellular cargo. Pharmacological enhancement of autophagy improves cargo clearance and lowers Tau levels, without restoring defects in lysosomal motility. Together, these findings demonstrate that mutant Tau directly perturbs cellular clearance pathways and suggest that boosting autophagy may help restore Tau homeostasis in tauopathies.
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