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首页> 外文期刊>Nucleic Acids Research >ACCUMULATION OF A MRNA DECAY INTERMEDIATE BY RIBOSOMAL PAUSING AT A STOP CODON
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ACCUMULATION OF A MRNA DECAY INTERMEDIATE BY RIBOSOMAL PAUSING AT A STOP CODON

机译:核糖体终止终止密码子在MRNA衰减中间的积累

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摘要

A RNA fragment which is protected from degradation by ribosome pausing at a stop codon has been identified in growing Escherichia coli. The fragment is 261 nt long and corresponds to the 3'-end of the mRNA expressed from a semi-synthetic model gene. The 5'-end of the RNA fragment, denoted rpRNA (ribosomal pause RNA), is located 13 bases upstream of the stop codon. In vivo decay of the complete mRNA and accumulation of rpRNA are dependent on the nature of the stop codon and its codon context. The data indicate that the rpRNA fragment arises from interrupted decay of the S3A' mRNA in the 5'-->3' direction, in connection with a ribosomal pause at the stop codon. RF-2 decoding of UGA is less efficient than RF-1 decoding of UAG in identical codon contexts, as judged from rpRNA steady-state levels. The half-life of UGA-containing rpRNAs is at least 5 min, indicating that ribosomal pausing can be a major factor in stabilising downstream regions of messenger RNAs.
机译:已经在生长的大肠杆菌中鉴定了通过核糖体在终止密码子处暂停而被保护免于降解的RNA片段。该片段长261 nt,对应于从半合成模型基因表达的mRNA的3'端。 RNA片段的5'端称为rpRNA(核糖体停顿RNA),位于终止密码子上游13个碱基处。体内完整mRNA的衰变和rpRNA的积累取决于终止密码子的性质及其密码子背景。数据表明,rpRNA片段是由S3A'mRNA在5'-> 3'方向上的中断降解引起的,与核糖体在终止密码子处的停顿有关。根据rpRNA稳态水平判断,在相同的密码子上下文中,UGA的RF-2解码比UAG的RF-1解码效率低。含UGA的rpRNA的半衰期至少为5分钟,表明核糖体暂停可能是稳定信使RNA下游区域的主要因素。

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