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首页> 外文期刊>Frontiers in Physiology >The Antioxidant Peroxiredoxin 6 (Prdx6) Exhibits Different Profiles in the Livers of Seawater- and Fresh Water-Acclimated Milkfish, Chanos chanos, upon Hypothermal Challenge
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The Antioxidant Peroxiredoxin 6 (Prdx6) Exhibits Different Profiles in the Livers of Seawater- and Fresh Water-Acclimated Milkfish, Chanos chanos, upon Hypothermal Challenge

机译:在低温挑战下,抗氧化剂Peroxiredoxin 6(Prdx6)在海水和淡水适应的遮目鱼 Chanos chanos 的肝脏中表现出不同的特征

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A tropical species, the euryhaline milkfish ( Chanos chanos ), is a crucial economic species in Southeast Asia and is intolerant of water temperature below 12°C. Large numbers of milkfish die during cold periods in winter. Hypothermal environments usually increase oxidative stress in teleosts, and the liver is the major organ for anti-oxidative responses in the body. Peroxiredoxin-6 (Prdx6) in mammals is a multi-functional enzyme and acts as both glutathione peroxidase, phospholipase A_(2)and acyl-transferase for maintenance of redox status and prevention of cell membrane peroxidation. Prdx6 can protect cells from oxidant-induced membrane damage by translocating the Prdx6 protein from the cytosol to the membrane. Upon cold stress, Ccprdx6 transcript levels were up-regulated after 24 h and 96 h in livers of fresh water (FW)- and seawater (SW)-acclimated milkfish, respectively. In the hypothermal FW group, the Prdx6 protein was up-regulated in the cytosol of hepatocytes with a similar role as glutathione peroxidase to reduce oxidative stress upon hypothermal challenge. Conversely, in hypothermal SW milkfish, total Prdx6 protein was down-regulated. However, cytosolic Prdx6 protein was translocated to the membrane, using the ability of phospholipase A_(2)to stabilize the membrane redox state. Moreover, H_(2)O_(2)content was increased in FW-acclimated milkfish livers upon hypothermal challenge. Ex vivo H_(2)O_(2)treatment of milkfish livers also induced Ccprdx6 transcriptional expression, which provided more evidence of the antioxidant role of milkfish Prdx6. Taken together, upon hypothermal challenge, greater oxidative stress in livers of FW-acclimated milkfish rather than SW-acclimated individuals led to different profiles of hepatic CcPrdx6 expression between the FW and SW group. The results indicated that CcPrdx6 played the role of antioxidant with different mechanisms, i.e., binding to reactive oxygen species and stabilizing membrane fluidity, in livers of hypothermal FW and SW milkfish, respectively.
机译:euryhaline遮目鱼(Chanos chanos)是热带物种,是东南亚的重要经济物种,对水温低于12°C不耐。大量的遮目鱼在冬季的寒冷时期死亡。低温环境通常会增加硬骨鱼的氧化应激,肝脏是体内抗氧化反应的主要器官。哺乳动物中的Peroxiredoxin-6(Prdx6)是一种多功能酶,可同时充当谷胱甘肽过氧化物酶,磷脂酶A_(2)和酰基转移酶,以维持氧化还原状态并防止细胞膜过氧化。 Prdx6可以通过将Prdx6蛋白从胞质溶胶转移到膜上,从而保护细胞免受氧化剂引起的膜损伤。在冷胁迫下,分别在淡水(FW)和海水(SW)适应的遮目鱼肝脏中分别经过24 h和96 h后,Ccprdx6转录水平被上调。在体温低下的组中,Prdx6蛋白在肝细胞的胞浆中上调,其作用与谷胱甘肽过氧化物酶类似,以降低体温过低时的氧化应激。相反,在低温西南遮目鱼中,总Prdx6蛋白被下调。然而,利用磷脂酶A_(2)稳定膜氧化还原状态的能力,将胞质Prdx6蛋白转移到膜上。此外,在低温条件下,适应FW的遮目鱼肝脏中H_(2)O_(2)含量增加。离体H_(2)O_(2)处理遮目鱼肝脏也诱导了Ccprdx6转录表达,这为遮目鱼Prdx6的抗氧化作用提供了更多证据。总之,在低温挑战下,适应FW的遮目鱼而不是适应SW的个体肝脏中更大的氧化应激导致FW和SW组之间肝CcPrdx6表达的不同特征。结果表明,CcPrdx6分别在低温FW和SW遮目鱼的肝脏中以不同的机理发挥抗氧化剂的作用,即与活性氧结合并稳定膜流动性。

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