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Osmolyte regulation by TonEBP/NFAT5 during anoxia-recovery and dehydration–rehydration stresses in the freeze-tolerant wood frog (Rana sylvatica)

机译:TonEBP / NFAT5在耐冻性木蛙(Rana sylvatica)的缺氧恢复和脱水-脱水胁迫过程中对渗透压的调节。

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摘要

BackgroundThe wood frog, Rana sylvatica, tolerates freezing as a means of winter survival. Freezing is considered to be an ischemic/anoxic event in which oxygen delivery is significantly impaired. In addition, cellular dehydration occurs during freezing because water is lost to extracellular compartments in order to promote freezing. In order to prevent severe cell shrinkage and cell death, it is important for the wood frog to have adaptive mechanisms for osmoregulation. One important mechanism of cellular osmoregulation occurs through the cellular uptake/production of organic osmolytes like sorbitol, betaine, and myo-inositol. Betaine and myo-inositol are transported by the proteins BGT-1 and SMIT, respectively. Sorbitol on the other hand, is synthesized inside the cell by the enzyme aldose reductase. These three proteins are regulated at the transcriptional level by the transcription factor, NFAT5/TonEBP. Therefore, the objective of this study was to elucidate the role of NFAT5/TonEBP in regulating BGT-1, SMIT, and aldose reductase, during dehydration and anoxia in the wood frog muscle, liver, and kidney tissues.
机译:背景木蛙Rana sylvatica可以忍受冰冻作为冬季生存的手段。冻结被认为是缺血/缺氧事件,其中氧的输送受到严重损害。此外,在冷冻过程中会发生细胞脱水,因为水分会流失到细胞外隔室,从而促进冷冻。为了防止严重的细胞皱缩和细胞死亡,对于木蛙来说,具有适应性的渗透调节机制是很重要的。细胞渗透调节的一种重要机制是通过细胞吸收/产生有机渗透剂,如山梨糖醇,甜菜碱和肌醇。甜菜碱和肌醇分别由蛋白质BGT-1和SMIT转运。另一方面,山梨糖醇是通过醛糖还原酶在细胞内部合成的。这三种蛋白在转录水平上受转录因子NFAT5 / TonEBP的调控。因此,本研究的目的是阐明在蛙蛙肌肉,肝脏和肾脏组织的脱水和缺氧过程中,NFAT5 / TonEBP在调节BGT-1,SMIT和醛糖还原酶中的作用。

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