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在稳态缩放过程中,蛋白酶抑制剂前体(ProSAAS)被优先上调,并减轻了5xFAD小鼠海马体中的淀粉样斑块负担。

ProSAAS is preferentially up-regulated during homeostatic scaling and reduces amyloid plaque burden in the 5xFAD mouse hippocampus.

作者信息

Mitias Samira, Schaffer Nicholas, Nair Saaya, Hook Chelsea, Lindberg Iris

机构信息

Department of Neurobiology, University of Maryland School of Medicine, Baltimore, Maryland, USA.

出版信息

J Neurochem. 2024 Sep;168(9):3235-3249. doi: 10.1111/jnc.16193. Epub 2024 Aug 8.

Abstract

The accumulation of β-amyloid in Alzheimer's disease greatly impacts neuronal health and synaptic function. To maintain network stability in the face of altered synaptic activity, neurons engage a feedback mechanism termed homeostatic scaling; however, this process is thought to be disrupted during disease progression. Previous proteomics studies have shown that one of the most highly regulated proteins in cell culture models of homeostatic scaling is the small secretory chaperone proSAAS. Our prior work has shown that proSAAS exhibits anti-aggregant behavior against alpha-synuclein and β-amyloid fibrillation in vitro and is up-regulated in cell models of proteostatic stress. However, the specific role that this protein might play in homeostatic scaling, and its anti-aggregant role in Alzheimer's progression, is not clear. To learn more about the role of proSAAS in maintaining hippocampal proteostasis, we compared its expression in a primary neuron model of homeostatic scaling to other synaptic components using western blotting and qPCR, revealing that proSAAS protein responses to homeostatic up- and down-regulation were significantly higher than those of two other synaptic vesicle components, 7B2 and carboxypeptidase E. However, proSAAS mRNA expression was static, suggesting translational control and/or altered protein degradation. ProSAAS was readily released upon depolarization of differentiated hippocampal cultures, supporting its synaptic localization. Immunohistochemical analysis demonstrated abundant proSAAS within the mossy fiber layer of the hippocampus in both wild-type and 5xFAD mice; in the latter, proSAAS was also concentrated around amyloid plaques. Importantly, overexpression of proSAAS in the CA1 region via stereotaxic injection of proSAAS-encoding AAV2/1 significantly decreased amyloid plaque burden in 5xFAD mice. We hypothesize that dynamic changes in proSAAS expression play a critical role in hippocampal proteostatic processes, both in the context of normal homeostatic plasticity and in the control of protein aggregation during Alzheimer's disease progression.

摘要

β-淀粉样蛋白在阿尔茨海默病中的积累对神经元健康和突触功能有很大影响。为了在突触活动改变的情况下维持网络稳定性,神经元会启动一种称为稳态缩放的反馈机制;然而,这个过程在疾病进展过程中被认为会受到破坏。先前的蛋白质组学研究表明,在稳态缩放的细胞培养模型中调控最为严格的蛋白质之一是小分泌伴侣蛋白proSAAS。我们之前的工作表明,proSAAS在体外对α-突触核蛋白和β-淀粉样蛋白的纤维化表现出抗聚集行为,并且在蛋白稳态应激的细胞模型中上调。然而,这种蛋白质在稳态缩放中可能发挥的具体作用及其在阿尔茨海默病进展中的抗聚集作用尚不清楚。为了更多地了解proSAAS在维持海马蛋白稳态中的作用,我们使用蛋白质免疫印迹法和定量聚合酶链反应,将其在稳态缩放的原代神经元模型中的表达与其他突触成分进行了比较,结果显示proSAAS蛋白对稳态上调和下调的反应显著高于其他两种突触小泡成分7B2和羧肽酶E。然而,proSAAS的mRNA表达是稳定的,这表明存在翻译控制和/或蛋白质降解改变。分化的海马培养物去极化时,proSAAS很容易释放,这支持了它的突触定位。免疫组织化学分析表明,在野生型和5xFAD小鼠的海马苔藓纤维层中都有大量的proSAAS;在5xFAD小鼠中,proSAAS也集中在淀粉样斑块周围。重要的是,通过立体定位注射编码proSAAS的腺相关病毒2/1在CA1区域过表达proSAAS,可显著降低5xFAD小鼠的淀粉样斑块负担。我们假设,proSAAS表达的动态变化在正常稳态可塑性背景下以及阿尔茨海默病进展过程中的蛋白质聚集控制方面,对海马蛋白稳态过程起着关键作用。

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