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首页> 外文期刊>RNA >Bacillus subtilis RNase J1 endonuclease and 5' exonuclease activities in the turnover of DeltaermC mRNA.
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Bacillus subtilis RNase J1 endonuclease and 5' exonuclease activities in the turnover of DeltaermC mRNA.

机译:枯草芽孢杆菌RNase J1核酸内切酶和DeltaermC mRNA转换中的5'核酸外切酶活性。

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摘要

RNase J1, a ribonuclease with 5' exonuclease and endonuclease activities, is an important factor in Bacillus subtilis mRNA decay. A model for RNase J1 endonuclease activity in mRNA turnover has RNase J1 binding to the 5' end and tracking to a target site downstream, where it makes a decay-initiating cleavage. The upstream fragment from this cleavage is degraded by 3' exonucleases; the downstream fragment is degraded by RNase J1 5' exonuclease activity. Previously, DeltaermC mRNA was used to show 5'-end dependence of mRNA turnover. Here we used DeltaermC mRNA to probe RNase J1-dependent degradation, and the results were consistent with aspects of the model. DeltaermC mRNA showed increased stability in a mutant strain that contained a reduced level of RNase J1. In agreement with the tracking concept, insertion of a strong stem-loop structure at +65 resulted in increased stability. Weakening this stem-loop structure resulted in reversion to wild-type stability. RNA fragments containing the 3' end were detected in a strain with reduced RNase J1 expression, but were undetectable in the wild type. The 5' ends of these fragments mapped to the upstream side of predicted stem-loop structures, consistent with an impediment to RNase J1 5' exonuclease processivity. A DeltaermC mRNA deletion analysis suggested that decay-initiating endonuclease cleavage could occur at several sites near the 3' end. However, even in the absence of these sites, stability was further increased in a strain with reduced RNase J1, suggesting alternate pathways for decay that could include exonucleolytic decay from the 5' end.
机译:RNase J1是一种具有5'核酸外切酶和核酸内切酶活性的核糖核酸酶,是枯草芽孢杆菌mRNA降解的重要因素。 mRNA转换中RNase J1内切核酸酶活性的模型具有RNase J1结合到5'端并追踪到下游的靶位点,在该位点进行衰变启动切割。该切割的上游片段被3'核酸外切酶降解;下游片段被RNase J1 5'核酸外切酶活性降解。以前,DeltaermC mRNA用于显示mRNA转换的5'-端依赖性。在这里,我们使用DeltaermC mRNA来探测RNase J1依赖的降解,其结果与模型的各个方面是一致的。 DeltaermC mRNA在含有降低的RNase J1水平的突变菌株中显示出更高的稳定性。与跟踪概念一致,在+65处插入了一个强大的茎环结构,从而提高了稳定性。减弱该茎环结构导致恢复为野生型稳定性。在具有降低的RNase J1表达的菌株中检测到包含3'端的RNA片段,但在野生型中未检测到。这些片段的5'端映射到预测的茎环结构的上游,这与RNase J1 5'核酸外切酶持续性的障碍一致。 DeltaermC mRNA缺失分析表明,可能在3'端附近的多个位点发生启动衰变的核酸内切酶裂解反应。然而,即使在没有这些位点的情况下,RNase J1减少的菌株的稳定性也进一步提高,这表明可能存在包括从5'端开始的核酸外切衰变的另一种衰变途径。

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