Huang Huijie, Shi Christina Huan, Yang Wenqi, Piña-Crespo Juan, Bhatnagar Jay, Curatolo Julian, Murad Rabi, Shah Palak, Campos Alex, Houser Alexandra, Porritt Rebecca A, Zhang Tongmei, Xiao Qiang, Feng Shengjie, Yip Kevin Y, Huang Timothy Y
bioRxiv. 2025 Jun 29:2025.06.25.661599. doi: 10.1101/2025.06.25.661599.
A role for the trafficking receptor SORLA in reducing Aβ levels has been well-established, however, relatively little is known with respect to whether and how SORLA can potentially affect tau pathology . Here, we show that transgenic SORLA upregulation (SORLA TG) can reverse pathological effects in aged PS19 (P301S tau) mouse brain, including tau phosphorylation and seeding, ventricle dilation, synapse loss, LTP impairment and glial hyperactivation. Proteomic analysis indicates reversion of PS19 profiles in PS19/SORLA TG hippocampus, including pathological changes in synapse-related proteins as well as key drivers of synaptic dysfunction such as Apoe and C1q. snRNA-seq analysis reveals suppression of PS19- signatures with SORLA upregulation, including proinflammatory induction of in glia. Tau seeding and aggregation, neuroinflammation, as well as PlxnB1/B2 induction are exacerbated in PS19 hippocampus with SORLA deletion. These results implicate a global role for SORLA in neuroprotection from tau toxicity in PS19 mouse brain.
转运受体SORLA在降低β淀粉样蛋白水平方面的作用已得到充分证实,然而,关于SORLA是否以及如何潜在影响tau病理,人们所知相对较少。在此,我们表明转基因SORLA上调(SORLA转基因小鼠)可逆转老年PS19(P301S tau)小鼠大脑中的病理效应,包括tau磷酸化和种子形成、脑室扩张、突触丧失、长时程增强受损和胶质细胞过度激活。蛋白质组学分析表明PS19/SORLA转基因小鼠海马中PS19图谱的逆转,包括突触相关蛋白的病理变化以及突触功能障碍的关键驱动因素如载脂蛋白E和C1q。单细胞核RNA测序分析显示随着SORLA上调,PS19特征受到抑制,包括胶质细胞中促炎因子的诱导。在PS19海马中,随着SORLA缺失,tau种子形成和聚集、神经炎症以及血小板内皮细胞黏附分子1/2诱导加剧。这些结果表明SORLA在保护PS19小鼠大脑免受tau毒性方面具有全局性作用。