Pan Allen L, Audrain Mickael, Sakakibara Emmy, Joshi Rajeev, Zhu Xiaodong, Wang Qian, Wang Minghui, Beckmann Noam D, Schadt Eric E, Gandy Sam, Zhang Bin, Ehrlich Michelle E, Salton Stephen R
Nash Family Department of Neuroscience, Icahn School of Medicine at Mount Sinai, New York, NY, United States.
Department of Neurology, Icahn School of Medicine at Mount Sinai, New York, NY, United States.
Front Aging Neurosci. 2024 Jun 28;16:1400447. doi: 10.3389/fnagi.2024.1400447. eCollection 2024.
Dual specificity protein phosphatase 6 (DUSP6) was recently identified as a key hub gene in a causal gene network that regulates late-onset Alzheimer's disease (AD). Importantly, decreased DUSP6 levels are correlated with an increased clinical dementia rating (CDR) in human subjects, and DUSP6 levels are additionally decreased in the 5xFAD amyloidopathy mouse model.
To investigate the role of DUSP6 in AD, we stereotactically injected AAV5-DUSP6 or AAV5-GFP (control) into the dorsal hippocampus (dHc) of both female and male 5xFAD or wild type mice, to induce overexpression of DUSP6 or GFP.
Barnes maze testing indicated that DUSP6 overexpression in the dHc of 5xFAD mice improved memory deficits and was associated with reduced amyloid plaque load, Aß and Aß levels, and amyloid precursor protein processing enzyme BACE1, in male but not in female mice. Microglial activation, which was increased in 5xFAD mice, was significantly reduced by dHc DUSP6 overexpression in both males and females, as was the number of "microglial clusters," which correlated with reduced amyloid plaque size. Transcriptomic profiling of female 5xFAD hippocampus revealed upregulation of inflammatory and extracellular signal-regulated kinase pathways, while dHc DUSP6 overexpression in female 5xFAD mice downregulated a subset of genes in these pathways. Gene ontology analysis of DEGs ( < 0.05) identified a greater number of synaptic pathways that were regulated by DUSP6 overexpression in male compared to female 5xFAD.
In summary, DUSP6 overexpression in dHc reduced amyloid deposition and memory deficits in male but not female 5xFAD mice, whereas reduced neuroinflammation and microglial activation were observed in both males and females, suggesting that DUSP6-induced reduction of microglial activation did not contribute to sex-dependent improvement in memory deficits. The sex-dependent regulation of synaptic pathways by DUSP6 overexpression, however, correlated with the improvement of spatial memory deficits in male but not female 5xFAD.
双特异性蛋白磷酸酶6(DUSP6)最近被确定为调节晚发性阿尔茨海默病(AD)的因果基因网络中的关键枢纽基因。重要的是,人类受试者中DUSP6水平降低与临床痴呆评定量表(CDR)升高相关,并且在5xFAD淀粉样病变小鼠模型中DUSP6水平也降低。
为了研究DUSP6在AD中的作用,我们通过立体定向将AAV5-DUSP6或AAV5-GFP(对照)注射到雌性和雄性5xFAD或野生型小鼠的背侧海马体(dHc)中,以诱导DUSP6或GFP的过表达。
巴恩斯迷宫测试表明,5xFAD小鼠dHc中DUSP6的过表达改善了记忆缺陷,并且在雄性而非雌性小鼠中与淀粉样斑块负荷、Aβ和Aβ水平以及淀粉样前体蛋白加工酶BACE1的降低有关。5xFAD小鼠中增加的小胶质细胞活化在雄性和雌性中均通过dHc DUSP6过表达而显著降低,与淀粉样斑块大小减小相关的“小胶质细胞簇”数量也是如此。雌性5xFAD海马体的转录组分析显示炎症和细胞外信号调节激酶途径上调,而雌性5xFAD小鼠中dHc DUSP6过表达下调了这些途径中的一部分基因。与雌性5xFAD相比,对差异表达基因(<0.05)的基因本体分析确定了更多由雄性DUSP6过表达调节的突触途径。
总之,dHc中DUSP6的过表达减少了雄性而非雌性5xFAD小鼠的淀粉样蛋白沉积和记忆缺陷,而在雄性和雌性中均观察到神经炎症和小胶质细胞活化减少,这表明DUSP6诱导的小胶质细胞活化减少并未导致记忆缺陷的性别依赖性改善。然而,DUSP6过表达对突触途径的性别依赖性调节与雄性而非雌性5xFAD中空间记忆缺陷的改善相关。