Ageing is the most prominent risk factor for Alzheimer's disease (AD). However, the cellular mechanisms linking neuronal proteostasis decline to the characteristic aberrant protein deposits in the brains of patients with AD remain elusive. Here we develop transdifferentiated neurons (tNeurons) from human dermal fibroblasts as a neuronal model that retains ageing hallmarks and exhibits AD-linked vulnerabilities. Remarkably, AD tNeurons accumulate proteotoxic deposits, including phospho-tau and amyloid β, resembling those in APP mouse brains and the brains of patients with AD. Quantitative tNeuron proteomics identify ageing- and AD-linked deficits in proteostasis and organelle homeostasis, most notably in endosome-lysosomal components. Lysosomal deficits in aged tNeurons, including constitutive lysosomal damage and ESCRT-mediated lysosomal repair defects, are exacerbated in AD tNeurons and linked to inflammatory cytokine secretion and cell death. Providing support for the centrality of lysosomal deficits in AD, compounds ameliorating lysosomal function reduce amyloid β deposits and cytokine secretion. Thus, the tNeuron model system reveals impaired lysosomal homeostasis as an early event of ageing and AD.
Proteostasis and lysosomal repair deficits in transdifferentiated neurons of Alzheimer's disease.
阿尔茨海默病转分化神经元中的蛋白质稳态和溶酶体修复缺陷
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作者:Chou Ching-Chieh, Vest Ryan, Prado Miguel A, Wilson-Grady Joshua, Paulo Joao A, Shibuya Yohei, Moran-Losada Patricia, Lee Ting-Ting, Luo Jian, Gygi Steven P, Kelly Jeffery W, Finley Daniel, Wernig Marius, Wyss-Coray Tony, Frydman Judith
| 期刊: | Nature Cell Biology | 影响因子: | 19.100 |
| 时间: | 2025 | 起止号: | 2025 Apr;27(4):619-632 |
| doi: | 10.1038/s41556-025-01623-y | 研究方向: | 神经科学 |
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