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首页> 外文期刊>Cells tissues organs >Methionine Sulfoxide Reductase A, B1 and B2 Are Likely to Be Involved in the Protection against Oxidative Stress in the Inner Ear
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Methionine Sulfoxide Reductase A, B1 and B2 Are Likely to Be Involved in the Protection against Oxidative Stress in the Inner Ear

机译:蛋氨酸亚砜还原酶A,B1和B2可能参与了内耳氧化应激的保护

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The methionine sulfoxide reductase (Msr) family of proteins is a class of repair enzymes that reduce methionine-S (MsrA) or methionine-R (MsrB) sulfoxide to methionine. Recent studies have reported that mutations in the MSRB3 gene cause autosomal recessive hearing loss in humans, and in mice MsrB3 deficiency leads to profound hearing loss due to hair cell apoptosis and stereocilia degeneration. However, apart from MsrB3, studies on Msr proteins in the inner ear have not yet been reported. In this study, we identified and characterized Msr expression in the cochlea and vestibule. First, we confirmed RNA expression levels of Msr family members in the cochlea and vestibule using reverse transcription PCR and detected Msr family members in both tissues. We also conducted immunohistochemical staining to localize Msr family members within the cochlea and vestibule. In the cochlea, MsrA was detected in supporting cells, spiral ligament, spiral limbus, Reissner's membrane and the spiral ganglion. MsrB1 was specifically expressed in hair cells and the spiral ganglion. MsrB2 was noted in the spiral ganglion, tectorial membrane and stria vascularis. In the vestibule, MsrA and MsrB1 were detected in hair cells and the vestibular ganglion, while MsrB2 was restricted to the vestibular ganglion. In this study, we identified distinct distributions of Msr family members in the organ of Corti and hypothesized that MsrA, MsrB1 and MsrB2 protect proteins in the organ of Corti from oxidative stress. (C) 2014 S. Karger AG, Basel
机译:蛋氨酸亚砜还原酶(Msr)家族是一类修复酶,可将蛋氨酸-S(MsrA)或蛋氨酸-R(M​​srB)亚砜还原为蛋氨酸。最近的研究报告说,MSRB3基因的突变会导致人类常染色体隐性遗传性听力损失,而在小鼠中,MsrB3缺乏症会由于毛细胞凋亡和纤毛变性而导致严重的听力损失。但是,除了MsrB3,还没有关于内耳中Msr蛋白的研究报道。在这项研究中,我们确定并表征了耳蜗和前庭中的Msr表达。首先,我们使用逆转录PCR确证了耳蜗和前庭Msr家族成员的RNA表达水平,并在两个组织中检测到了Msr家族成员。我们还进行了免疫组织化学染色以定位耳蜗和前庭内的Msr家族成员。在耳蜗中,在支持细胞,螺旋韧带,螺旋角膜缘,Reissner膜和螺旋神经节中检测到了MsrA。 MsrB1在毛细胞和螺旋神经节中特异性表达。 MsrB2注意到在螺旋神经节,盖膜和血管纹。在前庭中,在毛细胞和前庭神经节中检测到MsrA和MsrB1,而MsrB2仅限于前庭神经节。在这项研究中,我们确定了Cors器官中Msr家族成员的独特分布,并假设MsrA,MsrB1和MsrB2保护了Corti器官中的蛋白质免受氧化应激。 (C)2014 S.Karger AG,巴塞尔

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