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GSR is not essential for the maintenance of antioxidant defenses in mouse cochlea: Possible role of the thioredoxin system as a functional backup for GSR

机译:GSR对于维持小鼠耳蜗的抗氧化防御能力不是必不可少的:硫氧还蛋白系统可能作为GSR的功能后备

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摘要

Glutathione reductase (GSR), a key member of the glutathione antioxidant defense system, converts oxidized glutathione (GSSG) to reduced glutathione (GSH) and maintains the intracellular glutathione redox state to protect the cells from oxidative damage. Previous reports have shown that Gsr deficiency results in defects in host defense against bacterial infection, while diquat induces renal injury in Gsr hypomorphic mice. In flies, overexpression of GSR extended lifespan under hyperoxia. In the current study, we investigated the roles of GSR in cochlear antioxidant defense using Gsr homozygous knockout mice that were backcrossed onto the CBA/CaJ mouse strain, a normal-hearing strain that does not carry a specific Cdh23 mutation that causes progressive hair cell degeneration and early onset of hearing loss. Gsr-/- mice displayed a significant decrease in GSR activity and GSH/GSSG ratios in the cytosol of the inner ears. However, Gsr deficiency did not affect ABR (auditory brainstem response) hearing thresholds, wave I amplitudes or wave I latencies in young mice. No histological abnormalities were observed in the cochlea of Gsr-/- mice. Furthermore, there were no differences in the activities of cytosolic glutathione-related enzymes, including glutathione peroxidase and glutamate-cysteine ligase, or the levels of oxidative damage markers in the inner ears between WT and Gsr-/- mice. In contrast, Gsr deficiency resulted in increased activities of cytosolic thioredoxin and thioredoxin reductase in the inner ears. Therefore, under normal physiological conditions, GSR is not essential for the maintenance of antioxidant defenses in mouse cochlea. Given that the thioredoxin system is known to reduce GSSG to GSH in multiple species, our findings suggest that the thioredoxin system can support GSSG reduction in the mouse peripheral auditory system.
机译:谷胱甘肽还原酶(GSR)是谷胱甘肽抗氧化剂防御系统的关键成员,可将氧化型谷胱甘肽(GSSG)转化为还原型谷胱甘肽(GSH),并维持细胞内谷胱甘肽氧化还原状态,以保护细胞免受氧化损伤。先前的报道表明,Gsr缺乏会导致宿主抵抗细菌感染的防御能力出现缺陷,而敌草快会导致Gsr亚型小鼠肾损伤。在果蝇中,高铁过表达延长了GSR的寿命。在当前的研究中,我们使用Gsr纯合敲除小鼠回交到CBA / CaJ小鼠品系中研究了GSR在人工耳蜗抗氧化防御中的作用,该品系是正常听力的品系,不携带导致毛细血管变性的特定Cdh23突变并早发听力下降。 Gsr -/-小鼠的内耳细胞质中GSR活性和GSH / GSSG比值显着降低。但是,Gsr缺乏并不会影响幼鼠的ABR(听性脑干反应)听力阈值,I波幅度或I波潜伏期。在Gsr -/-小鼠的耳蜗中未观察到组织学异常。此外,WT和Gsr -/-之间的谷胱甘肽过氧化物酶和谷氨酸半胱氨酸连接酶等胞质谷胱甘肽相关酶的活性或内耳氧化损伤标记水平没有差异。老鼠。相反,Gsr缺乏导致内耳胞质硫氧还蛋白和硫氧还蛋白还原酶的活性增加。因此,在正常的生理条件下,GSR对于维持小鼠耳蜗的抗氧化防御不是必需的。鉴于已知硫氧还蛋白系统可以在多种物种中将GSSG还原为GSH,我们的发现表明,硫氧还蛋白系统可以支持小鼠外周听觉系统中GSSG的降低。

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