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Alteration in synaptic nanoscale organization dictates amyloidogenic processing in Alzheimers disease

机译:突触纳米级组织的改变决定了阿尔茨海默病的淀粉样蛋白加工

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摘要

Despite intuitive insights into differential proteolysis of amyloid precursor protein (APP), the stochasticity behind local product formation through amyloidogenic pathway at individual synapses remain unclear. Here, we show that the major components of amyloidogenic machinery namely, APP and secretases are discretely organized into nanodomains of high local concentration compared to their immediate environment in functional zones of the synapse. Additionally, with the aid of multiple models of Alzheimer's disease (AD), we confirm that this discrete nanoscale chemical map of amyloidogenic machinery is altered at excitatory synapses. Furthermore, we provide realistic models of amyloidogenic processing in unitary vesicles originating from the endocytic zone of excitatory synapses. Thus, we show how an alteration in the stochasticity of synaptic nanoscale organization contributes to the dynamic range of C-terminal fragments β (CTFβ) production, defining the heterogeneity of amyloidogenic processing at individual synapses, leading to long-term synaptic deficits as seen in AD.
机译:尽管对淀粉样蛋白前体蛋白(APP)的差异蛋白分解有直观的见解,但通过各个突触处的淀粉样品途径局部产物形成背后的随机性仍然尚不清楚。在这里,我们表明,与突触功能区的立即环境相比,淀粉样蛋白机械的主要组分是分离的,应用和分泌物的纳米型浓度为高局部浓度。此外,借助于多种Alzheimer疾病(AD)的模型,我们确认在兴奋性突触处改变了淀粉样蛋白机械的离散纳米级化学图谱。此外,我们在源自兴奋性突触的内吞区的单一囊泡中提供淀粉样蛋白加工的现实模型。因此,我们展示了突触纳米级组织的随机性的改变如何有助于C末端片段β(CTFβ)产生的动态范围,限定均匀突变处的淀粉样蛋白加工的异质性,导致长期突触缺陷如所示广告。

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