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Chronic Cerebral Hypoperfusion Induced Synaptic Proteome Changes in the rat Cerebral Cortex

机译:慢性脑低渗诱导大鼠脑皮层的突触蛋白质组变化

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Chronic cerebral hypoperfusion (CCH) evokes mild cognitive impairment (MCI) and contributes to the progression of vascular dementia and Alzheimer's disease (AD). How CCH induces these neurodegenerative processes that may spread along the synaptic network and whether they are detectable at the synaptic proteome level of the cerebral cortex remains to be established. In the present study, we report the synaptic protein changes in the cerebral cortex after stepwise bilateral common carotid artery occlusion (BCCAO) induced CCH in the rat. The occlusions were confirmed with magnetic resonance angiography 5 weeks after the surgery. Synaptosome fractions were prepared using sucrose gradient centrifugation from cerebral cortex dissected 7 weeks after the occlusion. The synaptic protein differences between the sham operated and CCH groups were analyzed with label-free nanoUHPLC-MS/MS. We identified 46 proteins showing altered abundance due to CCH. In particular, synaptic protein and lipid metabolism, as well as GABA shunt-related proteins showed increased while neurotransmission and synaptic assembly-related proteins showed decreased protein level changes in CCH rats. Protein network analysis of CCH-induced protein alterations suggested the importance of increased synaptic apolipoprotein E (APOE) level as a consequence of CCH. Therefore, the change in APOE level was confirmed with Western blotting. The identified synaptic protein changes would precede the onset of dementia-like symptoms in the CCH model, suggesting their importance in the development of vascular dementia.
机译:慢性脑低渗(CCH)唤起轻度认知障碍(MCI)并有助于血管痴呆和阿尔茨海默病(AD)的进展。 CCH如何诱导这些神经变性过程,这些过程可以沿着突触网络传播,以及是否在脑皮层的突触蛋白质水平上可检测到仍然建立。在本研究中,我们在逐步双侧常见的颈动脉闭塞(BCOOA)在大鼠中诱导CCH后报告突触蛋白在脑皮层中的变化。手术后5周用磁共振血管造影证实了闭塞。使用蔗糖梯度离心在闭塞后7周后从脑皮层中从脑皮层中分离而制备突触体组分。使用无标记的NanouHPLC-MS / MS分析假操作和CCH基团之间的突触蛋白质差异。我们鉴定了46个蛋白,显示由于CCH引起的丰富变化。特别地,突触蛋白和脂质代谢以及与GABA分流相关蛋白质显示出来,而神经递血和突触组件相关蛋白显示CCH大鼠的蛋白质水平变化降低。 CCH诱导的蛋白质改变的蛋白质网络分析表明,随着CCH的结果,增加了突触载体蛋白E(ApoE)水平的重要性。因此,用蛋白质印迹确认了Apoe水平的变化。鉴定的突触蛋白质变化将在CCH模型中的痴呆样症状的发作之前,这表明他们在血管痴呆的发展方面的重要性。

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