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A rapid method for determining tRNA charging levels in vivo: analysis of yeast mutants defective in the general control of amino acid biosynthesis.

机译:一种确定体内tRNA充电水平的快速方法:分析氨基酸生物合成的一般控制缺陷的酵母突变体。

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摘要

We describe a simple method to quantitate the intracellular levels of charged tRNA species representing all 20 amino acids. Small RNA species are isolated from yeast cells under conditions where amino acids remain bound to their cognate tRNAs. After chromatographic removal of free amino acids, the tRNAs are discharged, and the amounts of the released amino acids are then quantitated. This method was applied to yeast cells from a wild type strain and from three mutant strains that are defective both in the general control of amino acid biosynthesis and in protein synthesis. Two of these mutant strains, previously shown to be defective in the methionine or isoleucine tRNA synthetases, respectively contain undetectable amounts of charged methionine or isoleucine although their levels of the remaining 19 amino acids are similar to a wild type strain. In contrast, a gcd1 mutant strain has normal levels of all 20 amino-acyl tRNA species. Thus, gcd1 strains are defective in general control of amino acid biosynthesis for reasons other than artifactual starvation of an amino acid due to a failure in tRNA changing.
机译:我们描述了一种简单的方法来量化代表所有20个氨基酸的带电tRNA种类的细胞内水平。在氨基酸保持与其同源tRNA结合的条件下,从酵母细胞中分离出小RNA。色谱去除游离氨基酸后,将tRNA排出,然后对释放的氨基酸量进行定量。该方法应用于来自野生型菌株和三个突变菌株的酵母细胞,这些菌株在氨基酸生物合成的一般控制和蛋白质合成方面均存在缺陷。这些突变株中的两个先前显示出在甲硫氨酸或异亮氨酸tRNA合成中存在缺陷,尽管它们其余的19个氨基酸的水平与野生型相似,但分别含有不可检测量的带电荷甲硫氨酸或异亮氨酸。相比之下,gcd1突变株具有所有20种氨基酰基tRNA物种的正常水平。因此,gcd1菌株在氨基酸生物合成的一般控制中存在缺陷,原因是由于tRNA改变失败而导致人为的氨基酸饥饿。

著录项

  • 作者

    Hill, D E; Struhl, K;

  • 作者单位
  • 年度 1986
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  • 原文格式 PDF
  • 正文语种 en
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