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Dysfunction of the unfolded protein response during global brain ischemia and reperfusion.

机译:在整体性脑缺血和再灌注过程中,未折叠蛋白反应的功能障碍。

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摘要

A variety of endoplasmic reticulum (ER) stresses trigger the unfolded protein response (UPR), a compensatory response whose most proximal sensors are the ER membrane-bound proteins ATF6, IRE1alpha, and PERK. The authors simultaneously examined the activation of ATF6, IRE1alpha, and PERK, as well as components of downstream UPR pathways, in the rat brain after reperfusion after a 10-minute cardiac arrest. Although ATF6 was not activated, PERK was maximally activated at 10-minute reperfusion, which correlated with maximal eIF2alpha phosphorylation and protein synthesis inhibition. By 4-h reperfusion, there was 80% loss of PERK immunostaining in cortex and 50% loss in brain stem and hippocampus. PERK was degraded in vitro by mu-calpain. Although inactive IRE1alpha was maximally decreased by 90-minute reperfusion, there was no evidence that its substrate xbp-1 messenger RNA had been processed by removal of a 26-nt sequence. Similarly, there was no expression of the UPR effector proteins 55-kd XBP-1, CHOP, or ATF4. These data indicate that there is dysfunction in several key components of the UPR that abrogate the effects of ER stress. In other systems, failure to mount the UPR results in increased cell death. As other studies have shown evidence for ER stress after brain ischemia and reperfusion, the failure of the UPR may play a significant role in reperfusion neuronal death.
机译:多种内质网(ER)应激会触发未折叠的蛋白应答(UPR),这是一种补偿性应答,其最接近的传感器是与ER膜结合的蛋白ATF6,IRE1alpha和PERK。作者同时检查了心脏骤停10分钟后再灌注后大鼠脑中ATF6,IRE1alpha和PERK的激活以及下游UPR途径的组成。尽管未激活ATF6,但在再灌注10分钟时PERK被最大激活,这与最大的eIF2alpha磷酸化和蛋白质合成抑制相关。通过4小时再灌注,皮质中PERK免疫染色损失80%,脑干和海马体损失50%。 mu-钙蛋白酶可在体外降解PERK。尽管无活性的IRE1alpha在90分钟的再灌注过程中最大程度地降低了,但没有证据表明其底物xbp-1信使RNA已通过去除26-nt序列进行了处理。同样,没有UPR效应蛋白55-kd XBP-1,CHOP或ATF4的表达。这些数据表明,UPR的几个关键成分均存在功能障碍,从而消除了ER应激的影响。在其他系统中,无法安装UPR会导致细胞死亡增加。正如其他研究表明脑缺血和再灌注后ER应激的证据一样,UPR的失败可能在再灌注神经元死亡中起重要作用。

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