连接器
海马结构
泛素连接酶
高磷酸化
体内
化学
神经科学
药理学
细胞生物学
泛素
海马体
部分
癌症研究
陶氏病
自噬
病态的
药物发现
DNA连接酶
还原(数学)
计算生物学
疾病
生物化学
生物
磷酸化
药物开发
τ蛋白
生物信息学
医学
药品
蛋白质降解
德隆
作者
Tian Zhao,Tian-Yang Wang,Hao-Sen Wang,Yeh‐Jun Lim,Zhi-Jun Zhang,Xin-Rong Duan,Li Liang,Yanmei Li
标识
DOI:10.1021/acschembio.6c00096
摘要
Tau aggregation and hyperphosphorylation are key pathological features of Alzheimer's disease (AD). Because Tau is intrinsically disordered, conventional small-molecule inhibitors have achieved limited success. Proteolysis-targeting chimeras (PROTACs) enable the targeted proteasomal degradation of previously considered undruggable proteins. We designed Tau-targeted PROTAC candidates using methylene blue (MB) as a recognition moiety for aggregation-prone motifs within the microtubule-binding region and varied the linker lengths and E3 ligase recruitment ligands to optimize degradation efficiency. Cell-based screening revealed that MB-2-VHL1 and MB-2-VHL2 are active degraders. In vivo studies confirmed a reduction in total Tau levels and degradation of phosphorylated Tau (p-Tau). In 3xTg-AD mice, subcutaneous administration of MB-2-VHL2 was associated with reduced hippocampal Tau and p-Tau levels and improved recognition memory and spatial learning. MB-2-VHL2 was also detectable in both serum and brain tissue by LC-MS/MS after subcutaneous administration and did not cause detectable histological or biochemical toxicity. These results indicate that MB-2-VHL2 can reduce both total Tau and p-Tau levels in vivo. Although the reduction in p-Tau appeared more pronounced under our experimental conditions, whether MB-2-VHL2 preferentially targets pathological Tau remains to be determined. Overall, these findings support further optimization and preclinical evaluation of Tau-targeted PROTACs as a potential therapeutic strategy for AD.
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