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黑腹果蝇细胞裂解物中的翻译控制

Translational control in lysates of Drosophila melanogaster cells.

作者信息

Scott M P, Pardue M L

出版信息

Proc Natl Acad Sci U S A. 1981 Jun;78(6):3353-7. doi: 10.1073/pnas.78.6.3353.

Abstract

Cell-free protein-synthesizing systems made from Drosophila melanogaster cells were used to study the translational control induced in these cells by heat shock. Lysates of normally growing cells, termed 25 degrees C cells, translate both normal and heat shock mRNAs. Lysates of cells heat shocked at 36 degrees C for 1 hr, termed 36 degrees C cells, translate preferentially heat-shock mRNAs and a few 25 degrees C cell mRNAs. Thus, both lysates appear to reproduce the control displayed in vivo. Both lysates are optimally active at 28 degrees C, and all translations are done at that temperature, demonstrating that, once established, the discrimination system does not require heat-shock temperature for its activity. Addition of crude ribosome fractions from 25 degrees C cell lysates to lysates from heat-shocked cells "rescues" translation of 25 degrees C cell mRNA, which suggests that the discriminating elements are associated with ribosomes. Neither the heat-shock crude ribosome supplements nor the soluble fractions have any effect on either lysate. The experiments also show that RNA selection is determined by some feature of the RNA structure that is insensitive to protease digestion and phenol/chloroform extraction. The essential structural feature may not be unique to Drosophila mRNAs because the Drosophila lysate is capable of discriminating among mRNAs from other organisms.

摘要

利用从黑腹果蝇细胞制备的无细胞蛋白质合成系统来研究热休克在这些细胞中诱导的翻译控制。正常生长细胞的裂解物,称为25℃细胞,能翻译正常和热休克mRNA。在36℃热休克1小时的细胞裂解物,称为36℃细胞,优先翻译热休克mRNA和少数25℃细胞的mRNA。因此,两种裂解物似乎都重现了体内显示的控制。两种裂解物在28℃时活性最佳,所有翻译均在该温度下进行,这表明一旦建立,鉴别系统的活性不需要热休克温度。将来自25℃细胞裂解物的粗核糖体组分添加到热休克细胞的裂解物中,“挽救”了25℃细胞mRNA的翻译,这表明鉴别元件与核糖体相关联。热休克粗核糖体补充物或可溶性组分对任何一种裂解物都没有影响。实验还表明,RNA选择是由RNA结构的某些特征决定的,这些特征对蛋白酶消化和苯酚/氯仿提取不敏感。基本结构特征可能并非果蝇mRNA所特有,因为果蝇裂解物能够区分来自其他生物体的mRNA。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/427c/319566/363fedcc6ffc/pnas00657-0092-a.jpg

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