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The sigma-1 receptor-Zinc finger protein 179 pathway protects against hydrogen peroxide-induced cell injury

机译:sigma-1受体-锌指蛋白179通路可防止过氧化氢诱导的细胞损伤

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摘要

The accumulation of reactive oxygen species (ROS) have implicated the pathogenesis of several human diseases including neurodegenerative disorders, stroke, and traumatic brain injury, hence protecting neurons against ROS is very important. In this study, we focused on sigma-1 receptor (Sig-1R), a chaperone at endoplasmic reticulum, and investigated its protective functions. Using hydrogen peroxide (H2O2)-induced ROS accumulation model, we verified that apoptosis-signaling pathways were elicited by H2O2 treatment. However, the Sig-1R agonists, dehydroepiandrosterone (DHEA) and DHEA sulfate (DHEAS), reduced the activation of apoptotic pathways significantly. By performing protein-protein interaction assays and shRNA knockdown of Sig-1R, we identified the brain Zinc finger protein 179 (Znf179) as a downstream target of Sig-1R regulation. The neuroprotective effect of Znf179 overexpression was similar to that of DHEAS treatment, and likely mediated by affecting the levels of antioxidant enzymes. We also quantified the levels of peroxiredoxin 3 (Prx3) and superoxide dismutase 2 (SOD2) in the hippocampi of wild-type and Znf179 knockout mice, and found both enzymes to be reduced in the knockout versus the wild-type mice. In summary, these results reveal that Znf179 plays a novel role in neuroprotection, and Sig-1R agonists may be therapeutic candidates to prevent ROS-induced damage in neurodegenerative and neurotraumatic diseases.
机译:活性氧(ROS)的积累已牵涉到几种人类疾病的发病机理,包括神经退行性疾病,中风和脑外伤,因此保护神经元抵抗ROS非常重要。在这项研究中,我们集中于内质网的伴侣分子sigma-1受体(Sig-1R),并研究了其保护功能。使用过氧化氢(H2O2)诱导的ROS积累模型,我们验证了H2O2处理可引发细胞凋亡信号通路。但是,Sig-1R激动剂脱氢表雄酮(DHEA)和硫酸DHEA(DHEAS)显着降低了凋亡途径的激活。通过执行蛋白-蛋白相互作用测定和Sig-1R的shRNA敲低,我们确定了大脑锌指蛋白179(Znf179)是Sig-1R调控的下游目标。 Znf179过表达的神经保护作用与DHEAS处理相似,并且可能是通过影响抗氧化酶的水平介导的。我们还定量了野生型和Znf179基因敲除小鼠海马中的过氧化物酶3(Prx3)和超氧化物歧化酶2(SOD2)的水平,发现与野生型小鼠相比,基因敲除的这两种酶均降低。总之,这些结果表明Znf179在神经保护中起着新作用,而Sig-1R激动剂可能是预防ROS引起的神经退行性疾病和神经外伤性疾病的治疗候选物。

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