首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >G6pd Deficiency Does Not Affect the Cytosolic Glutathione or Thioredoxin Antioxidant Defense in Mouse Cochlea
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G6pd Deficiency Does Not Affect the Cytosolic Glutathione or Thioredoxin Antioxidant Defense in Mouse Cochlea

机译:G6PD缺乏不会影响小鼠耳蜗中的细胞溶质谷胱甘肽或硫氧菊酯抗氧化剂防御

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Glucose-6-phosphate dehydrogenase (G6PD) is the first and rate-limiting enzyme of the pentose phosphate pathway; it catalyzes the conversion of glucose-6-phosphate to 6-phosphogluconate and NADP(+) to NADPH and is thought to be the principal source of NADPH for the cytosolic glutathione and thioredoxin antioxidant defense systems. We investigated the roles of G6PD in the cytosolic antioxidant defense in the cochlea of G6pd hypomorphic mice that were backcrossed onto normal-hearing CBA/CaJ mice. Young G6pd-deficient mice displayed a significant decrease in cytosolic G6PD protein levels and activities in the inner ears. However, G6pd deficiency did not affect the cytosolic NADPH redox state, or glutathione or thioredoxin antioxidant defense in the inner ears. No histological abnormalities or oxidative damage was observed in the cochlea of G6pd hemizygous males or homozygous females. Furthermore, G6pd deficiency did not affect auditory brainstem response hearing thresholds, wave I amplitudes or wave I latencies in young males or females. In contrast, G6pd deficiency resulted in increased activities and protein levels of cytosolic isocitrate dehydrogenase 1, an enzyme that catalyzes the conversion of isocitrate to alpha-ketoglutarateand NADP(+) to NADPH, in the inner ear. In a mouse inner ear cell line, knockdown of Idh1, but not G6pd, decreased cell growth rates, cytosolic NADPH levels, and thioredoxin reductase activities. Therefore, under normal physiological conditions, G6pd deficiency does not affect the cytosolic glutathione or thioredoxin antioxidant defense in mouse cochlea. Under G6pd deficiency conditions, isocitrate dehydrogenase 1 likely functions as the principal source of NADPH for cytosolic antioxidant defense in the cochlea.
机译:葡萄糖-6-磷酸脱氢酶(G6PD)是戊糖磷酸途径的第一和速率限制酶;它催化葡萄糖-6-磷酸葡萄糖葡萄糖酸酯和NADP(+)转化为NADPH,并被认为是细胞溶质谷胱甘肽和硫氧化昔林抗氧化剂防御系统NADPH的主要来源。我们研究了G6PD在核心抗氧化小鼠中的细胞溶质抗氧化防御中的作用,其被回交的正常听力CBA / CAJ小鼠。年轻的G6PD缺陷小鼠显示出在内耳中的细胞源性G6PD蛋白水平和活性的显着降低。然而,G6PD缺乏不会影响内耳内谷胱甘肽氧化铈氧化还原状态,或谷胱甘肽或肾病毒素抗氧化剂防御。在G6PD血红素雄性或纯合女性的耳蜗中没有观察到组织学异常或氧化损伤。此外,G6PD缺陷没有影响听觉脑干响应听力阈值,Wave I幅度或幼小男性的延迟。相反,G6PD缺乏导致胞质异亚硝酸酯脱氢酶1的活性和蛋白质水平增加,酶催化在内耳中催化亚甲基酮酸转化为α-ketoglutarateand NADP(+)的酶。在小鼠内耳细胞系中,IDH1的敲低,但不是G6PD,细胞生长率降低,细胞溶质NADPH水平和硫代素还原酶活性。因此,在正常的生理条件下,G6PD缺乏不会影响小鼠耳蜗中的细胞溶质谷胱甘肽或硫氧酰胺抗氧化剂。在G6PD缺乏条件下,异柠檬酸脱氢酶1可能是耳蜗中细胞溶质抗氧化防御的NADPH的主要来源。

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