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Trisomy 21–induced dysregulation of microglial homeostasis in Alzheimer’s brains is mediated by USP25

机译:三元21诱导的Alzheimer大脑中微痛过期的失调介导通过USP25介导

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Down syndrome (DS), caused by trisomy of chromosome 21, is the most significant risk factor for early-onset Alzheimer’s disease (AD); however, underlying mechanisms linking DS and AD remain unclear. Here, we show that triplication of homologous chromosome 21 genes aggravates neuroinflammation in combined murine DS-AD models. Overexpression of USP25 , a deubiquitinating enzyme encoded by chromosome 21, results in microglial activation and induces synaptic and cognitive deficits, whereas genetic ablation of Usp25 reduces neuroinflammation and rescues synaptic and cognitive function in 5×FAD mice. Mechanistically, USP25 deficiency attenuates microglia-mediated proinflammatory cytokine overproduction and synapse elimination. Inhibition of USP25 reestablishes homeostatic microglial signatures and restores synaptic and cognitive function in 5×FAD mice. In summary, we demonstrate an unprecedented role for trisomy 21 and pathogenic effects associated with microgliosis as a result of the increased USP25 dosage, implicating USP25 as a therapeutic target for neuroinflammation in DS and AD.
机译:唐氏综合征(DS),由染色体21的三颗粒引起的,是早熟阿尔茨海默病(广告)的最重要的风险因素;但是,链接DS和AD的潜在机制仍然不清楚。在这里,我们表明同源染色体21个基因的三倍体会使鼠DS-AD模型中的神经炎性加剧。 USP25的过度表达,染色体21编码的脱硫酶,导致微胶质激活并诱导突触和认知缺陷,而USP25的遗传消融减少了5×FAD小鼠中的神经炎性和救援突触和认知功能。机械地,USP25缺陷衰减衰减微胶质介导的促炎细胞因子过度生产和突触消除。 USP25的抑制重新建立了稳态微痛标记,并在5×FAD小鼠中恢复突触和认知功能。总之,我们证明了TRISOMY 21的前所未有的作用,以及由于增加的USP25剂量增加而与微细胞源相关的致病作用,将USP25视为DS和AD中神经炎症的治疗靶标。

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