首页> 美国卫生研究院文献>Molecular and Cellular Biology >Nonsense codons can reduce the abundance of nuclear mRNA without affecting the abundance of pre-mRNA or the half-life of cytoplasmic mRNA.
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Nonsense codons can reduce the abundance of nuclear mRNA without affecting the abundance of pre-mRNA or the half-life of cytoplasmic mRNA.

机译:无义密码子可以减少核mRNA的丰度而不会影响前mRNA的丰度或细胞质mRNA的半衰期。

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摘要

The abundance of the mRNA for human triosephosphate isomerase (TPI) is decreased to approximately 20% of normal by frameshift and nonsense mutations that cause translation to terminate at a nonsense codon within the first three-fourths of the reading frame. Results of previous studies inhibiting RNA synthesis with actinomycin D suggested that the decrease is not attributable to an increased rate of cytoplasmic mRNA decay. However, the step in TPI RNA metabolism that is altered was not defined, and the use of actinomycin D, in affecting all polymerase II-transcribed genes, could result in artifactual conclusions. In data presented here, the nonsense codon-mediated reduction in the level of TPI mRNA is shown to be characteristic of both nuclear and cytoplasmic fractions of the cell, indicating that the altered metabolic step is nucleus associated. Neither aberrancies in gene transcription nor aberrancies in RNA splicing appear to contribute to the reduction since there were no accompanying changes in the amount of nuclear run-on transcription, the level of any of the six introns in TPI pre-mRNA, or the size of processed mRNA in the nucleus. Deletion of all splice sites that reside downstream of a nonsense codon does not abrogate the reduction, indicating that the reduction takes place independently of the splicing of a downstream intron. Experiments that placed TPI gene expression under the control of the human c-fos promoter, which can be transiently activated by the addition of serum to serum-deprived cells, verified that there is no detectable effect of a nonsense codon on the turnover of cytoplasmic mRNA.
机译:人三糖磷酸异构酶(TPI)的mRNA丰度由于移码和无义突变而降低至正常值的约20%,这些突变导致翻译终止于阅读框的前四分之三以无义密码子终止。以前的研究用放线菌素D抑制RNA合成的结果表明,这种下降并非归因于细胞质mRNA衰减速率的增加。但是,TPI RNA代谢改变的步骤尚未确定,放线菌素D在影响所有聚合酶II转录的基因中的使用可能导致人为的结论。在这里提供的数据中,TPI mRNA的无义密码子介导的减少被证明是细胞核部分和细胞质部分的特征,表明改变的代谢步骤与细胞核有关。基因转录的异常或RNA剪接的异常均不会导致这种减少,因为核运行转录的数量,TPI pre-mRNA的六个内含子中的任何一个的内含子水平或在细胞核中加工了mRNA。删除位于无义密码子下游的所有剪接位点不会消除还原,这表明该还原独立于下游内含子的拼接而发生。将TPI基因表达置于人c-fos启动子控制下的实验可以通过在缺失血清的细胞中添加血清而被瞬时激活,这证明无意义密码子对细胞质mRNA的转换没有可检测的作用。 。

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