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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Abnormal post-translational and extracellular processing of brevlcan in plaque-bearing mice over-expressing APPsw
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Abnormal post-translational and extracellular processing of brevlcan in plaque-bearing mice over-expressing APPsw

机译:过度表达APPsw的斑块小鼠中brevlcan的翻译后和细胞外加工异常

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摘要

Aggregation of amyloid-beta (Abeta) in the forebrain of Alzheimer's disease (AD) subjects may disturb the molecular organization of the extracellular microenvironment that modulates neural and synaptic plasticity. Proteoglycans are major components of this extracellular environment. To test the hypothesis that Abeta, or another amyloid precursor protein (APP) dependent mechanism modifies the accumulation and/or turnover of extracellular proteoglycans, we examined whether the expression and processing of brevican, an abundant extracellular, chondroitin sulfate (CS)-bearing proteoglycan, were altered in brains of Abeta-depositing transgenic mice (APPsw -APP gene bearing the Swedish mutation) as a model of AD. The molecular size of CS chains attached to brevican was smaller in hippocampal tissue from APPsw mice bearing Abeta deposits compared to non-transgenic mice, likely because of changes in the CS chains. Also, the abundance of the major proteolytic fragment of brevican was markedly diminished in extracts from several telencephalic regions of APPsw mice compared to non-transgenic mice, yet these immunoreactive fragments appeared to accumulate adjacent to the plaque edge. These results suggest that Abeta or APP exert inhibitory effects on proteolytic cleavage mechanisms responsible for synthesis and turnover of proteoglycans. As proteoglycans stabilize synaptic structure and inhibit molecular plasticity, defective brevican processing observed in Ap-bearing mice and potentially end-stage human AD, may contribute to deficient neural plasticity.
机译:阿尔茨海默氏病(AD)患者前脑中的淀粉样β(Abeta)聚集可能会干扰细胞外微环境的分子组织,从而调节神经和突触可塑性。蛋白聚糖是这种细胞外环境的主要成分。为了检验Abeta或另一种淀粉样前体蛋白(APP)依赖性机制修饰细胞外蛋白聚糖的积累和/或周转的假说,我们检查了富含细胞外硫酸软骨素(CS)的蛋白多糖brevican的表达和加工过程。作为AD的模型,在Abeta沉积转基因小鼠(带有瑞典突变的APPsw -APP基因)的大脑中发生了改变。与非转基因小鼠相比,在带有Abeta沉积物的APPsw小鼠的海马组织中,连接至短肽聚糖的CS链的分子大小较小,这可能是由于CS链的变化所致。同样,与非转基因小鼠相比,来自APPsw小鼠几个端脑区域的提取物中brevican的主要蛋白水解片段的丰度明显降低,但是这些免疫反应片段似乎在噬菌斑边缘附近积累。这些结果表明,Abeta或APP对蛋白聚糖的合成和周转负责的蛋白水解切割机制发挥抑制作用。由于蛋白聚糖可稳定突触结构并抑制分子可塑性,因此在携带Ap的小鼠和潜在的终末期人类AD中观察到有缺陷的brevican加工可能会导致神经可塑性不足。

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