首页> 外文期刊>Free Radical Biology and Medicine: The Official Journal of the Oxygen Society >Role for glutathione peroxidase-4 in brain development and neuronal apoptosis: specific induction of enzyme expression in reactive astrocytes following brain injury.
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Role for glutathione peroxidase-4 in brain development and neuronal apoptosis: specific induction of enzyme expression in reactive astrocytes following brain injury.

机译:谷胱甘肽过氧化物酶4在大脑发育和神经元凋亡中的作用:脑损伤后反应性星形胶质细胞中酶表达的特异性诱导。

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摘要

Glutathione peroxidase-4 (GPx4) is a multifunctional selenoprotein expressed as mitochondrial, cytosolic, or nuclear isoforms. As a catalytically active enzyme it has been implicated in antioxidative defense, but during sperm development it functions as a structural protein. GPx4 null mice die in utero at midgestation and knockdown of GPx4 during embryogenesis disturbs brain development. To explore the cerebral function of GPx4 we profiled cell-specific enzyme expression at various stages of perinatal brain maturation and investigated its regulation following brain injury by immunohistochemistry, in situ hybridization, and quantitative RT-PCR. Large amounts of GPx4 mRNA were detected in all neuronal layers during perinatal brain development but expression became restricted during postnatal maturation. In adult brain mitochondrial and cytosolic GPx4 isoforms were detected in neurons of cerebral cortex, hippocampus, and cerebellum whereas glial cells were devoid of GPx4. Following selective brain injury expression of the enzyme was upregulated in reactive astrocytes of lesioned areas and deafferented regions but not in neurons. Selective knockdown of GPx4 by small interfering RNA induced depletion of phosphatidylinositol-(4,5)-bisphosphate in the neuronal plasma membrane and subsequently apoptosis as indicated by caspase-3 activation. We hypothesize that astrocytic upregulation of GPx4 in response to injury is part of a protective cascade counteracting further cell damage.
机译:谷胱甘肽过氧化物酶4(GPx4)是一种多功能的硒蛋白,表现为线粒体,胞质或核亚型。作为一种催化活性酶,它与抗氧化防御有关,但是在精子发育过程中,它作为结构蛋白起作用。 GPx4无效小鼠在妊娠中期在子宫内死亡,而GPx4的敲除在胚胎发生期间干扰大脑发育。为了探索GPx4的脑功能,我们分析了围产期脑成熟各个阶段的细胞特异性酶表达,并通过免疫组织化学,原位杂交和定量RT-PCR研究了脑损伤后其调控。在围产期大脑发育过程中,所有神经元层均检测到大量GPx4 mRNA,但在产后成熟过程中表达受到限制。在成年大脑中,在大脑皮层,海马和小脑的神经元中检测到线粒体和胞质GPx4亚型,而神经胶质细胞缺乏GPx4。在选择性脑损伤后,该酶的表达在病变区域和脱失力区域的反应性星形胶质细胞中被上调,但在神经元中则不被上调。小干扰RNA对GPx4的选择性敲低诱导了神经细胞质膜中磷脂酰肌醇-(4,5)-双磷酸的消耗,随后凋亡由caspase-3激活指示。我们假设GPx4响应损伤的星形细胞上调是抵消进一步细胞损伤的保护性级联的一部分。

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