UK Dementia Research Institute at the University of Edinburgh, Chancellor's Building, Edinburgh Medical School, Edinburgh, EH16 4SB, UK.
Centre for Discovery Brain Sciences, University of Edinburgh, Hugh Robson Building, George Square, Edinburgh, EH8 9XD, UK.
Nat Commun. 2022 Jan 10;13(1):135. doi: 10.1038/s41467-021-27702-w.
Alzheimer's disease (AD) alters astrocytes, but the effect of Aß and Tau pathology is poorly understood. TRAP-seq translatome analysis of astrocytes in APP/PS1 ß-amyloidopathy and MAPT tauopathy mice revealed that only Aß influenced expression of AD risk genes, but both pathologies precociously induced age-dependent changes, and had distinct but overlapping signatures found in human post-mortem AD astrocytes. Both Aß and Tau pathology induced an astrocyte signature involving repression of bioenergetic and translation machinery, and induction of inflammation pathways plus protein degradation/proteostasis genes, the latter enriched in targets of inflammatory mediator Spi1 and stress-activated cytoprotective Nrf2. Astrocyte-specific Nrf2 expression induced a reactive phenotype which recapitulated elements of this proteostasis signature, reduced Aß deposition and phospho-tau accumulation in their respective models, and rescued brain-wide transcriptional deregulation, cellular pathology, neurodegeneration and behavioural/cognitive deficits. Thus, Aß and Tau induce overlapping astrocyte profiles associated with both deleterious and adaptive-protective signals, the latter of which can slow patho-progression.
阿尔茨海默病(AD)会改变星形胶质细胞,但 Aβ和 Tau 病理学的影响还不太清楚。APP/PS1 β-淀粉样病变和 MAPT Tau 病变小鼠星形胶质细胞的 TRAP-seq 翻译组分析显示,只有 Aβ会影响 AD 风险基因的表达,但两种病变都会过早地诱导与年龄相关的变化,并且在人类 AD 星形胶质细胞的尸检样本中发现了独特但重叠的特征。Aβ和 Tau 病理学都会诱导星形胶质细胞特征,包括抑制生物能量和翻译机制,以及诱导炎症途径和蛋白质降解/蛋白质稳态基因,后者在炎症介质 Spi1 和应激激活的细胞保护 Nrf2 的靶标中富集。星形胶质细胞特异性 Nrf2 表达诱导了一种反应性表型,该表型重现了这种蛋白质稳态特征的部分内容,减少了各自模型中 Aβ沉积和磷酸化 Tau 积累,并挽救了全脑转录失调、细胞病理学、神经退行性变和行为/认知缺陷。因此,Aβ和 Tau 诱导了与有害和适应性保护信号相关的重叠星形胶质细胞特征,后者可以减缓病理进展。