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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Val97Leu mutant presenilin-1 induces tau hyperphosphorylation and spatial memory deficit in mice and the underlying mechanisms.
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Val97Leu mutant presenilin-1 induces tau hyperphosphorylation and spatial memory deficit in mice and the underlying mechanisms.

机译:Val97Leu突变体presenilin-1诱导小鼠tau过度磷酸化和空间记忆不足及其潜在机制。

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Although the pathological role of presenilin-1 mutation in early onset familial Alzheimer's disease has been widely studied, few focused on how the presenilin-1 mutations result in memory impairment and tau hyperphosphorylation. In the present study, we expressed human Val97Leu mutant presenilin-1, which is reported in Chinese pedigrees by our group, in transgenic mice and found that the mutant presenilin-1 induced spatial memory deficit and tau hyperphosphorylation at PHF-1, pS199/202, pT231 and pS396 epitopes, but not at pS214 and pS422 epitopes. Pearson analysis showed that the memory deficit was only significantly correlated with tau phosphorylation level at PHF-1, pS199/202, pT231 and pS396 epitopes. Additionally, the hyperphosphorylated tau and tangle-like argentophilic structures were detected at CA3 and CA4, but not CA1, region of hippocampus, and we also found tangle-like structure and wizened degenerative neurons in frontal cortex. We demonstrated the tau hyperphosphorylation at the same epitopes in N2a cells expressing the mutant presenilin-1, which is caused by inhibition of phosphoinositol-3 kinase/Akt and activation of glycogen synthase kinase-3 specifically. Our data demonstrated that human Val97Leu mutant presenilin-1 causes spatial memory deficit in mice and increases tau phosphorylation level in glycogen synthase kinase-3-dependent manner.
机译:尽管早老素-1突变在家族性早老性阿尔茨海默氏病中的病理学作用已得到广泛研究,但很少有人关注早老素-1突变如何导致记忆障碍和tau过度磷酸化。在本研究中,我们在转基因小鼠中表达了人类Val97Leu突变体presenilin-1(在我们的血统书中有报道),发现该突变体presenilin-1在PHF-1,pS199 / 202诱导了空间记忆缺陷和tau过度磷酸化。 ,pT231和pS396表位,但不在pS214和pS422表位。 Pearson分析表明,记忆缺陷仅与PHF-1,pS199 / 202,pT231和pS396表位的tau磷酸化水平显着相关。此外,在海马区CA3和CA4处检测到高磷酸化的tau和缠结状的亲银结构,而在CA1则未检测到,并且我们还在额叶皮层中发现了缠结状的结构和干的变性神经元。我们在表达突变体早老素-1的N2a细胞中的相同表位上证明了tau过度磷酸化,这是由于磷酸肌醇-3激酶/ Akt的抑制和糖原合酶激酶3的激活引起的。我们的数据表明,人类Val97Leu突变体presenilin-1引起小鼠空间记忆不足,并以糖原合酶激酶3依赖性方式增加tau磷酸化水平。

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