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首页> 外文期刊>Nucleic acids research >A conserved sequence element in ribonuclease III processing signals is not required for accurate in vitro enzymatic cleavage
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A conserved sequence element in ribonuclease III processing signals is not required for accurate in vitro enzymatic cleavage

机译:准确的体外酶促切割不需要核糖核酸酶III处理信号中的保守序列元素

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摘要

Ribonuclease III of Escherichia coli is prominently involved in the endoribonucleolytic processing of cell and viral-encoded RNAs. Towards the goal of defining the RNA sequence and structural elements that establish specific catalytic cleavage of RNase III processing signals, this report demonstrates that a 60 nucleotide RNA (R1.1 RNA) containing the bacteriophage 17 R1.1 RNase III processing signal, can be generated by in vitro enzymatic transcription of a synthetic deoxyoligonucleotide and accurately cleaved in vitro by RNase III. Several R1.1 RNA sequence variants were prepared to contain point mutations in the internal loop which, on the basis of a hypothetical ‘dsRNA mimicry' structural model of RNase III processing signals, would be predicted to inhibit cleavage by disrupting essential tertiary RNA-RNA interactions. These R1.1 sequence variants are accurately and efficiently cleaved in vitro by RNase III, indicating that the dsRNA mimicry structure, if it does exist, is not important for substrate reactivity. Also, we tested the functional importance of the strongly conserved CUU/GAA base-pair sequence by constructing R1 .1 sequence variants containing base- pair changes within this element. These R1.1 variants are accurately cleaved at rates comparable to wild-type R1.1 RNA, indicating the nonessentiality of this conserved sequence element in establishing in vitro processing reactivity and selectivity.
机译:大肠杆菌的核糖核酸酶III主要参与细胞核糖核酸和病毒编码RNA的核糖核酸内切加工。为了确定建立特定催化裂解RNase III加工信号的RNA序列和结构元件的目标,本报告证明,含有噬菌体17 R1.1 RNase III加工信号的60个核苷酸的RNA(R1.1 RNA)可以是通过合成脱氧寡核苷酸的体外酶促转录产生,并在体外被RNase III精确切割。制备了几个R1.1 RNA序列变体以在内部环中包含点突变,这些突变基于RNase III加工信号的假设“ dsRNA模仿”结构模型,有望通过破坏必需的第三级RNA-RNA来抑制切割。互动。这些R1.1序列变异体可在RNase III中准确,高效地在体外切割,这表明dsRNA模仿结构(如果存在)对于底物反应性并不重要。此外,我们通过构建在此元件内包含碱基对变化的R1.1序列变体,测试了高度保守的CUU / GAA碱基对序列的功能重要性。这些R1.1变体以与野生型R1.1 RNA相当的速率被精确切割,表明该保守序列元件在建立体外加工反应性和选择性中不是必需的。

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