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线虫秀丽隐杆线虫热休克后基因表达模式的改变。

Alterations in the pattern of gene expression following heat shock in the nematode Caenorhabditis elegans.

作者信息

Snutch T P, Baillie D L

出版信息

Can J Biochem Cell Biol. 1983 Jun;61(6):480-7. doi: 10.1139/o83-064.

Abstract

Exposure of the nematode Caenorhabditis elegans to elevated temperatures induces the preferential synthesis of eight major polypeptides of approximate molecular weights 81 000, 70 000, 41 000, 38 000, 29 000, 19 000, 18 000, and 16 000. In pulse-labelled worms these peptides first appear at 29 degrees C and continue to be synthesized up to lethal temperatures. They are heat inducible at every stage of development. While temperature elevation induces the synthesis of the heat-shock polypeptides, the in vivo synthesis of most other proteins present before heat shock is suppressed. In contrast, in vitro translation of mRNA from heat-shocked worms shows no alteration from the pattern of normal 20 degrees C mRNAs except for the appearance of the heat-shock mRNAs. An in vitro study of RNA from control and heat-shocked dauer larvae shows that this developmental variant possesses little translatable mRNA but, upon heat shock, synthesizes a set of messages corresponding to the heat-shock polypeptides. The low background of this system will be especially useful in the analysis and purification of heat-shock mRNA for molecular cloning experiments. Extensive similarities between the Drosophila and C. elegans heat-shock responses are shown, including homology between the 70-kdalton heat-shock genes of the two organisms.

摘要

将线虫秀丽隐杆线虫暴露于高温下会诱导优先合成8种主要多肽,其近似分子量分别为81000、70000、41000、38000、29000、19000、18000和16000。在脉冲标记的线虫中,这些肽首先在29摄氏度时出现,并在达到致死温度之前持续合成。它们在发育的每个阶段都可被热诱导。虽然温度升高会诱导热休克多肽的合成,但热休克前存在的大多数其他蛋白质的体内合成受到抑制。相比之下,热休克线虫mRNA的体外翻译与正常20摄氏度mRNA的模式相比没有变化,只是出现了热休克mRNA。对对照和热休克滞育幼虫的RNA进行的体外研究表明,这种发育变体几乎没有可翻译的mRNA,但在热休克时会合成一组与热休克多肽相对应的信息。该系统的低背景在分子克隆实验中对热休克mRNA的分析和纯化将特别有用。果蝇和秀丽隐杆线虫的热休克反应之间显示出广泛的相似性,包括两种生物的70千道尔顿热休克基因之间的同源性。

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