首页> 外文期刊>Journal of the Neurological Sciences: Official Bulletin of the World Federation of Neurology >Ischemic preconditioning-induced neuroprotection against transient cerebral ischemic damage via attenuating ubiquitin aggregation
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Ischemic preconditioning-induced neuroprotection against transient cerebral ischemic damage via attenuating ubiquitin aggregation

机译:缺血预适应诱导的神经保护作用,通过减弱泛素聚集来抵抗短暂性脑缺血

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Ubiquitin binds to short-lived proteins, and denatured proteins are produced by various forms of injuries. In the present study, we investigated the effect of ischemic preconditioning (IPC) on free ubiquitin and its mutant form (ubiquitin+ 1) in the gerbil hippocampus induced by transient cerebral ischemia. The animals were randomly assigned to 4 groups (sham-operated-group, ischemia-operated-group, IPC plus (+)-sham-operated-group, and IPC + ischemia-operated-group). IPC was induced by subjecting gerbils to a 2 min of ischemia followed by 1 day of recovery. A significant loss of neurons was observed in the stratum pyramidale (SP) of the hippocampal CA1 region (CA1) in the ischemia-operated-groups 5 days after ischemia-reperfusion (I-R). In all the IPC + ischemia-operated-groups, neurons in the SP were well protected. We found that strong ubiquitin immunoreactivity was detected in the SP in the sham-operated-group and the immunoreactivity was decreased with time after I-R. In all the IPC + ischemia-operated-groups, ubiquitin immunoreactivity in the SP was similar to that in the sham-operated group. Moderate ubiquitin+ 1 immunoreactivity was detected in the SP of the sham-operated-group, and the immunoreactivity was markedly increased 2 days after I-R. Five days after I-R, ubiquitin+ 1 immunoreactivity was very weak in the SP. In all the IPC + ischemia-operated-groups, ubiquitin+ 1 immunoreactivity in the SP was slightly decreased with time after I-R. Western blot analysis showed that, in all the IPC + ischemia-ischemia-groups, the levels of ubiquitin and ubiquitin+ 1 proteins were well maintained after I-R. In brief, our findings suggest that the inhibition of the depletion of free ubiquitin and the formation of ubiquitin+ 1 may have an essential role in inducing cerebral ischemic tolerance by IPC.
机译:泛素与短寿蛋白结合,并且变性蛋白是由多种形式的损伤产生的。在本研究中,我们调查了缺血预处理(IPC)对短暂性脑缺血所致沙鼠海马中游离泛素及其突变体形式(泛素+ 1)的影响。将动物随机分为4组(假手术组,缺血手术组,IPC加(+)假手术组和IPC +缺血手术组)。通过使沙鼠接受2分钟的缺血再恢复1天来诱导IPC。缺血再灌注(I-R)5天后,在缺血手术组的海马CA1区(CA1)的锥体层(SP)中观察到神经元的大量损失。在所有IPC +缺血操作组中,SP中的神经元受到良好保护。我们发现,在假手术组的SP中检测到强泛素免疫反应性,并且免疫反应性随I-R后的时间而降低。在所有IPC +缺血手术组中,SP中的泛素免疫反应性与假手术组中的相似。在假手术组的SP中检测到中等的泛素+1免疫反应性,并且I-R后2天免疫反应性显着增加。 I-R后五天,SP中的泛素+1免疫反应非常弱。在所有IPC +缺血操作组中,I-R后,SP中的泛素+1免疫反应性随时间而略有降低。蛋白质印迹分析表明,在所有IPC +缺血-缺血组中,I-R后都能很好地维持泛素和泛素+ 1蛋白的水平。简而言之,我们的发现表明抑制游离泛素的消耗和形成泛素+1可能在IPC诱导脑缺血耐受中起重要作用。

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