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首页> 外文期刊>Journal of Neuroscience Research >Oxygen-glucose deprivation activates 5-lipoxygenase mediated by oxidative stress through the p38 mitogen-activated protein kinase pathway in PC12 cells.
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Oxygen-glucose deprivation activates 5-lipoxygenase mediated by oxidative stress through the p38 mitogen-activated protein kinase pathway in PC12 cells.

机译:氧葡萄糖剥夺激活了PC12细胞中通过p38丝裂原激活的蛋白激酶途径通过氧化应激介导的5-脂氧合酶。

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摘要

5-Lipoxygenase (5-LOX) is a key enzyme catalyzing arachidonic acid to form leukotrienes. We have reported that ischemic-like injury activates 5-LOX in PC12 cells; however, the mechanisms are unknown. To determine whether ischemic-like injury activates 5-LOX mediated by oxidative stress through the p38 MAPK pathway, we transfected GFP-5-LOX into PC12 cells and induced ischemic-like injury by oxygen-glucose deprivation (OGD). We found that the transfected GFP-5-LOX was localized primarily in the nuclei and translocated to the nuclear envelope after OGD/recovery reaching a maximum 2 hr after a 2-hr exposure to OGD. The nonselective 5-LOX inhibitor caffeic acid, 5-LOX-activating protein inhibitor MK886, and selective 5-LOX inhibitor zileuton attenuated the cell injury and reduced the production of 5-LOX products, cysteinyl leukotrienes, after OGD/recovery. However, only caffeic acid inhibited OGD/recovery-induced 5-LOX translocation. OGD/recovery also increased reactive oxygen species (ROS), which was inhibited by caffeic acid only. Hydrogen peroxide, an exogenous ROS, evoked similar cell injury and 5-LOX translocation, and the inhibitors had effects on the changes after H(2)O(2) similar to those after OGD/recovery. Both OGD/recovery and H(2)O(2) increased the phosphorylated p38 MAPK level, which was inhibited by caffeic acid and the ROS scavenger edaravone, but not by MK886 or zileuton. Moreover, SB203580 (a p38 MAPK inhibitor) and edaravone inhibited the cell injury and 5-LOX translocation induced by OGD/recovery and H(2)O(2). Thus, we conclude that OGD/recovery-induced ischemic-like injury induces 5-LOX activation, which is mediated by oxidative stress through activating the p38 MAPK pathway.
机译:5-Lipoxygenase(5-LOX)是催化花生四烯酸形成白三烯的关键酶。我们已经报道缺血样损伤激活了PC12细胞中的5-LOX。但是,机制尚不清楚。为了确定缺血样损伤是否通过p38 MAPK途径激活氧化应激介导的5-LOX,我们将GFP-5-LOX转染到PC12细胞中,并通过缺氧-葡萄糖剥夺(OGD)诱导缺血样损伤。我们发现,转染的GFP-5-LOX主要位于细胞核中,并在OGD /回收后暴露于OGD 2小时后最大达到2小时后转移到核被膜中。 OGD /回收后,非选择性5-LOX抑制剂咖啡酸,5-LOX活化蛋白抑制剂MK886和选择性5-LOX抑制剂齐留通减弱了细胞损伤并减少了5-LOX产物半胱氨酸白三烯的产生。但是,仅咖啡酸抑制OGD /回收诱导的5-LOX易位。 OGD /回收率也增加了活性氧(ROS),仅被咖啡酸抑制。过氧化氢,一种外源性ROS,引起相似的细胞损伤和5-LOX易位,并且该抑制剂对H(2)O(2)后的变化与OGD /回收后的变化具有相似的影响。 OGD /回收率和H(2)O(2)均可增加磷酸化的p38 MAPK水平,该水平被咖啡酸和ROS清除剂依达拉奉抑制,但未被MK886或齐留通抑制。此外,SB203580(p38 MAPK抑制剂)和依达拉奉抑制由OGD /回收率和H(2)O(2)诱导的细胞损伤和5-LOX易位。因此,我们得出的结论是,OGD /恢复诱导的缺血样损伤会诱导5-LOX激活,这是通过激活p38 MAPK途径由氧化应激介导的。

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