首页> 外文期刊>Biochimica et biophysica acta. Gene structure and expression >Freeze-induced expression of a novel gene, fr47, in the liver of the freeze-tolerant wood frog, Rana sylvatica
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Freeze-induced expression of a novel gene, fr47, in the liver of the freeze-tolerant wood frog, Rana sylvatica

机译:冷冻诱导的蛙蛙蛙的肝脏中新基因fr47的冷冻诱导表达

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摘要

The ability to endure the freezing of body fluids is well developed as an adaptation for winter survival in several species of woodland frogs. Recently, the mechanisms supporting natural freeze tolerance have been shown to include the expression of novel genes. One such novel gene, fr47, codes for a 390-amino acid protein present in the livers of freeze-tolerant anurans (Rana sylvatica, Pseudacris crucifer, Hyla versicolor) but not in freeze-intolerant species (Rana pipiens, Scaphiopus couchii). Regulatory influences on gene and protein expression were investigated using R. sylvatica, Northern blot analysis showed that transcript levels were increased following 24 h of freezing (5.1-fold), 24 h of anoxia exposure (6.4-fold), or the loss of 20% of total body water (2.7-fold). Immunoblotting with anti-FR47 antibody indicated that protein levels increased during freezing and thawing, but decreased somewhat during anoxia or dehydration exposure, although rebounding during recovery. These results suggest that (i) FR47 function is important for freeze survival, and (ii) that control at the protein level may be exerted posttranscriptionally. Finally, assessment of putative signal transduction pathways regulating fr47 gene expression, via in vitro incubations of liver slices, indicated the involvement of a protein kinase C-mediated pathway.
机译:抵抗体液冻结的能力已得到很好的发展,可以适应几种林蛙的冬季生存。最近,已经证明支持自然冷冻耐受性的机制包括新基因的表达。一种这样的新基因fr47编码存在于耐冻无环种(Rana sylvatica,Pseudacris crucifer,Hyla versicolor)肝脏中的390个氨基酸蛋白,但不存在于不耐冷冻的物种(Rana pipiens,Scaphiopus couchii)中。使用西番莲研究了对基因和蛋白质表达的调控影响,Northern blot分析显示,冷冻24小时(5.1倍),缺氧24小时(6.4倍)或丢失20小时后,转录水平增加占全身水的百分比(2.7倍)。用抗FR47抗体进行的免疫印迹表明,蛋白质水平在冷冻和解冻过程中增加,但在缺氧或脱水暴露过程中有所降低,尽管在恢复过程中会反弹。这些结果表明(i)FR47功能对于冷冻存活很重要,并且(ii)可以在转录后施加对蛋白质水平的控制。最后,通过肝切片的体外温育评估推定的调节fr47基因表达的信号转导途径,表明涉及蛋白激酶C介导的途径。

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