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The poly(A)-dependent degradation pathway of rpsO mRNA is primarily mediated by RNase R

机译:rpsO mRNA的poly(A)依赖性降解途径主要由RNase R介导

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摘要

Polyadenylation is an important factor controlling RNA degradation and RNA quality control mechanisms. In this report we demonstrate for the first time that RNase R has in vivo affinity for polyadenylated RNA and can be a key enzyme involved in poly(A) metabolism. RNase II and PNPase, two major RNA exonucleases present in Escherichia coli, could not account for all the poly(A)-dependent degradation of the rpsO mRNA. RNase II can remove the poly(A) tails but fails to degrade the mRNA as it cannot overcome the RNA termination hairpin, while PNPase plays only a modest role in this degradation. We now demonstrate that in the absence of RNase E, RNase R is the relevant factor in the poly(A)-dependent degradation of the rpsO mRNA. Moreover, we have found that the RNase R inactivation counteracts the extended degradation of this transcript observed in RNase II-deficient cells. Elongated rpsO transcripts harboring increasing poly(A) tails are specifically recognized by RNase R and strongly accumulate in the absence of this exonuclease. The 3′ oligo(A) extension may stimulate the binding of RNase R, allowing the complete degradation of the mRNA, as RNase R is not susceptible to RNA secondary structures. Moreover, this regulation is shown to occur despite the presence of PNPase. Similar results were observed with the rpsT mRNA. This report shows that polyadenylation favors in vivo the RNase R-mediated pathways of RNA degradation.
机译:聚腺苷酸化是控制RNA降解和RNA质量控制机制的重要因素。在本报告中,我们首次证明RNase R在体内对聚腺苷酸化RNA具有亲和力,并且可能是参与poly(A)代谢的关键酶。 RNase II和PNPase是大肠杆菌中存在的两个主要RNA核酸外切酶,不能解释rpsO mRNA的所有poly(A)依赖性降解。 RNase II可以去除poly(A)尾巴,但无法降解mRNA,因为它无法克服RNA终止发夹,而PNPase在降解中仅发挥了适度的作用。我们现在证明,在不存在RNase E的情况下,RNase R是rpsO mRNA的poly(A)依赖性降解中的相关因素。此外,我们发现RNase R失活抵消了在RNase II缺陷细胞中观察到的该转录物的扩展降解。带有增加的poly(A)尾巴的延长的rpsO转录物被RNase R特异性识别,并在不存在这种核酸外切酶的情况下强烈积累。 3'oligo(A)延伸可能会刺激RNase R的结合,从而使mRNA完全降解,因为RNase R对RNA二级结构不敏感。此外,尽管存在PNPase,但仍显示出这种调节。 rpsT mRNA观察到相似的结果。该报告表明,聚腺苷酸化有利于体内RNase R介导的RNA降解途径。

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