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HuR Function and Translational State Analysis Following Global Brain Ischemia and Reperfusion

机译:全脑缺血再灌注后的HuR功能和转化状态分析

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Prolonged translation arrest in post-ischemic hippocampal CA1 pyramidal neurons precludes translation of induced stress genes and directly correlates with cell death. We evaluated the regulation of mRNAs containing adenine- and uridine-rich elements (ARE) by assessing HuR protein and hsp70 mRNA nuclear translocation, HuR polysome binding, and translation state analysis of CA1 and CA3 at 8 h of reperfusion after 10 min of global cerebral ischemia. There was no difference between CA1 and CA3 at 8 h of reperfusion in nuclear or cytoplasmic HuR protein or hsp70 mRNA, or HuR polysome association, suggesting that neither mechanism contributed to post-ischemic outcome. Translation state analysis revealed that 28 and 58 % of unique mRNAs significantly different between 8hR and NIC, in CA3 and CA1, respectively, were not polysome-bound. There was significantly greater diversity of polysome-bound mRNAs in reperfused CA3 compared to CA1, and in both regions, ARE-containing mRNAs accounted for 4–5 % of the total. These data indicate that posttranscriptional ARE-containing mRNA regulation occurs in reperfused neurons and contributes to post-ischemic outcome. Understanding the differential responses of vulnerable and resistant neurons to ischemia will contribute to the development of effective neuroprotective therapies.
机译:在缺血后海马CA1锥体神经元中延长的翻译停滞阻止了诱导的应激基因的翻译,并与细胞死亡直接相关。我们通过评估HuR蛋白和hsp70 mRNA核易位,HuR多核糖体结合以及全球脑缺血10分钟后再灌注8h时CA1和CA3的翻译状态分析,评估了含有富含腺嘌呤和尿苷的元素(ARE)的mRNA的调节缺血。在再灌注8小时后,CA1和CA3在核或细胞质HuR蛋白或hsp70 mRNA或HuR多核糖体缔合中没有差异,表明这两种机制均未导致缺血后结局。翻译状态分析显示,在CA3和CA1中8hR和NIC之间分别存在28%和58%的显着差异,这是不与多核糖体结合的。与CA1相比,再灌注CA3中与多核糖体结合的mRNA的多样性要大得多,在两个区域中,含ARE的mRNA占总数的4%至5%。这些数据表明包含转录后ARE的mRNA调节发生在再灌注神经元中,并有助于缺血后的结果。了解脆弱和耐药性神经元对缺血的不同反应将有助于开发有效的神经保护疗法。

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