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首页> 外文期刊>Nature neuroscience >Spike bursts increase amyloid-β 40/42 ratio by inducing a presenilin-1 conformational change
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Spike bursts increase amyloid-β 40/42 ratio by inducing a presenilin-1 conformational change

机译:穗突通过诱导早老素-1构象变化增加淀粉样蛋白-β40/42比

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摘要

Accumulated genetic evidence suggests that attenuation of the ratio between cerebral amyloid-β Aβ40 and Aβ42 isoforms is central to familial Alzheimer's disease (FAD) pathogenesis. However, FAD mutations account for only 1-2% of Alzheimer's disease cases, leaving the experience-dependent mechanisms regulating Aβ40/42 an enigma. Here we explored regulation of Aβ40/42 ratio by temporal spiking patterns in the rodent hippocampus. Spike bursts boosted Aβ40/42 through a conformational change in presenilin1 (PS1), the catalytic subunit of γ-secretase, and subsequent increase in Aβ40 production. Conversely, single spikes did not alter basal PS1 conformation and Aβ40/42. Burst-induced PS1 conformational shift was mediated by means of Ca 2+-dependent synaptic vesicle exocytosis. Presynaptic inhibition in vitro and visual deprivation in vivo augmented synaptic and Aβ40/42 facilitation by bursts in the hippocampus. Thus, burst probability and transfer properties of synapses represent fundamental features regulating Aβ40/42 by experience and may contribute to the initiation of the common, sporadic Alzheimer's disease.
机译:积累的遗传证据表明,脑淀粉样蛋白-βAβ40和Aβ42同工型之间比率的降低是家族性阿尔茨海默氏病(FAD)发病机制的关键。但是,FAD突变仅占阿尔茨海默氏病病例的1-2%,而依赖于经验的机制调节Aβ40/ 42仍是一个谜。在这里,我们探索了通过啮齿类动物海马的时间突增模式对Aβ40/ 42比的调节。穗突爆发通过早老素1(PS1)(γ-分泌酶的催化亚基)的构象变化和随后的Aβ40产量增加而增强了Aβ40/ 42。相反,单个峰值不会改变基础PS1构象和Aβ40/ 42。爆发诱导的PS1构象转变是通过Ca 2+依赖性突触小泡胞吐作用介导的。突触前抑制在体外和体内视觉剥夺通过海马突增而增强了突触和Aβ40/ 42促进。因此,突触的爆发概率和转移特性代表了通过经验调节Aβ40/ 42的基本特征,并且可能有助于引发常见的散发性阿尔茨海默氏病。

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