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首页> 外文期刊>The Cerebellum >Deficient PKR in RAX/PKR Association Ameliorates Ethanol-Induced Neurotoxicity in the Developing Cerebellum
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Deficient PKR in RAX/PKR Association Ameliorates Ethanol-Induced Neurotoxicity in the Developing Cerebellum

机译:RAX / PKR协会中不足的PKR改善了乙醇诱导的小脑发育中的神经毒性。

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摘要

Ethanol-induced neuronal loss is closely related to the pathogenesis of fetal alcohol spectrum disorders. The cerebellum is one of the brain areas that are most sensitive to ethanol. The mechanism underlying ethanol neurotoxicity remains unclear. Our previous in vitro studies have shown that the double-stranded RNA (dsRNA)-activated protein kinase (PKR) regulates neuronal apoptosis upon ethanol exposure and ethanol activates PKR through association with its intracellular activator RAX. However, the role of PKR and its interaction with RAX in vivo have not been investigated. In the current study, by utilizing N-PKR−/− mice, C57BL/6J mice with a deficient RAX-binding domain in PKR, we determined the critical role of RAX/PKR association in PKR-regulated ethanol neurotoxicity in the developing cerebellum. Our data indicate that while N-PKR−/− mice have a similar BAC profile as wild-type mice, ethanol induces less brain/body mass reduction as well as cerebellar neuronal loss. In addition, ethanol promotes interleukin-1β (IL-1β) secretion, and IL-1β is a master cytokine regulating inflammatory response. Importantly, ethanol-promoted IL-1β secretion is inhibited in the developing cerebellum of N-PKR−/− mice. Thus, RAX/PKR interaction and PKR activation regulate ethanol neurotoxicity in the developing cerebellum, which may involve ethanol-induced neuroinflammation. Further, PKR could be a possible target for pharmacological intervention to prevent or treat fetal alcohol spectrum disorder (FASD).
机译:乙醇引起的神经元丢失与胎儿酒精谱异常的发病机理密切相关。小脑是对乙醇最敏感的大脑区域之一。乙醇神经毒性的潜在机制仍不清楚。我们以前的体外研究表明,双链RNA(dsRNA)活化的蛋白激酶(PKR)在乙醇暴露后调节神经元凋亡,乙醇通过与其细胞内活化剂RAX结合来活化PKR。但是,尚未研究PKR的作用及其与RAX在体内的相互作用。在当前的研究中,通过利用N-PKR-/-小鼠,PKR中RAX结合域不足的C57BL / 6J小鼠,我们确定了RAX / PKR缔合在发育中的小脑中PKR调控的乙醇神经毒性中的关键作用。我们的数据表明,尽管N-PKR-/-小鼠具有与野生型小鼠相似的BAC谱,但是乙醇诱导的脑/体重降低以及小脑神经元损失减少。此外,乙醇可促进白介素1β(IL-1β)分泌,而IL-1β是调节炎症反应的主要细胞因子。重要的是,乙醇促进的IL-1β分泌在N-PKR-/-小鼠的小脑发育中受到抑制。因此,RAX / PKR相互作用和PKR激活调节发育中小脑的乙醇神经毒性,这可能涉及乙醇诱导的神经炎症。此外,PKR可能是预防或治疗胎儿酒精谱系障碍(FASD)的药理干预措施的可能目标。

著录项

  • 来源
    《The Cerebellum 》 |2015年第4期| 386-397| 共12页
  • 作者单位

    Department Pharmacology Nutritional Sciences University of Kentucky College of Medicine">(1);

    The First Affiliated Hospital of Xiamen University">(2);

    Department of Biochemistry and Molecular Biology School of Basic Medical Sciences Fujian Medical University">(3);

    Graduate Center for Toxicology University of Kentucky College of Medicine">(4);

    Department of Physiology and Pathophysiology School of Basic Medical Sciences Fujian Medical University">(5);

    Department Pharmacology Nutritional Sciences University of Kentucky College of Medicine">(1);

    University of Kentucky">(6);

    Department Pharmacology Nutritional Sciences University of Kentucky College of Medicine">(1);

    Department of Neurology Affiliated Provincial Hospital of Anhui Medical University">(7);

    Department Pharmacology Nutritional Sciences University of Kentucky College of Medicine">(1);

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Alcohol; Neuron; Cerebellum; Apoptosis; Fetal alcohol spectrum disorders; PKR; Rax;

    机译:醇;神经元;小脑;细胞凋亡;胎儿酒精谱异常;PKR;拉克斯;

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