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Analysis of the temperature-dependent temporal pattern of heat-shock-protein synthesis in fish cells

机译:鱼细胞中热激蛋白合成的温度依赖性时间模式分析

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Continuous exposure of Chinook salmon embryo cells to an elevated incubation temperature of 24°C induces the transient expression of a set of heat-shock or stress proteins whereas maintenance of the cells at a higher incubation temperature of 28°C produces a continuous synthesis of these stress proteins. In vitro translation studies suggest that the temperature-dependent temporal pattern of stress-protein synthesis is correlated with the levels of stress-protein mRNA. This was verified using a recombinant-DNA probe complementary to the 70K heat-shock-protein mRNA. A transient increase in the level of the fish heat-shock 70K mRNA was observed in RNA samples isolated from cells continuously exposed at 24°C However, a constant increase in the level of this specific mRNA was found in RNA preparations obtained from cells maintained at 28°C Therefore, the temperature-dependent pattern of fish heat-shockprotein synthesis appears to be directly related to the level of heat-shock-protein mRNA.
机译:奇努克鲑鱼胚胎细胞连续暴露于升高的24°C孵育温度下会诱导一组热休克或应激蛋白的瞬时表达,而将细胞维持在28°C的较高孵育温度下会连续合成这些蛋白应激蛋白。体外翻译研究表明,应激蛋白合成的温度依赖性时间模式与应激蛋白mRNA的水平相关。使用与70K热激蛋白mRNA互补的重组DNA探针证实了这一点。从连续暴露于24°C的细胞中分离出的RNA样品中观察到鱼热休克70K mRNA的水平瞬时增加,但是,从保持在60℃的细胞获得的RNA制备物中发现该特定mRNA的水平不断增加。 28°C因此,鱼类热激蛋白合成的温度依赖性模式似乎与热激蛋白mRNA的水平直接相关。

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