首页> 美国卫生研究院文献>The EMBO Journal >Roles of RNase E RNase II and PNPase in the degradation of the rpsO transcripts of Escherichia coli: stabilizing function of RNase II and evidence for efficient degradation in an ams pnp rnb mutant.
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Roles of RNase E RNase II and PNPase in the degradation of the rpsO transcripts of Escherichia coli: stabilizing function of RNase II and evidence for efficient degradation in an ams pnp rnb mutant.

机译:RNase ERNase II和PNPase在大肠杆菌rpsO转录产物的降解中的作用:RNase II的稳定功能以及在ams pnp rnb突变体中有效降解的证据。

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摘要

The Escherichia coli rpsO gene gives rise to different mRNA species resulting either from termination of transcription or from processing of primary transcripts by RNase E and RNase III. The main degradation pathway of these transcripts involves a rate-limiting RNase E cleavage downstream of the structural gene which removes the 3' terminal stem-loop structure of the transcription terminator. This structure protects the message from the attack of 3'-5' exonucleases and its removal results in very rapid degradation of the transcript by polynucleotide phosphorylase and RNase II. Polynucleotide phosphorylase is also able to degrade slowly the mRNA harboring the 3' terminal hairpin of the terminator. In contrast, RNase II appears to protect the rpsO mRNA species which retains the 3' hairpin structure. Rapid degradation of the rpsO mRNA is observed after inactivation of RNase II even in a strain deficient for RNase E and polynucleotide phosphorylase. The enzyme(s) involved in this degradation pathway is not known. We detected an unstable elongated rpsO mRNA presumably resulting from the addition of nucleotides at the 3' end of the transcript.
机译:大肠埃希氏菌rpsO基因产生不同的mRNA物种,这是由于转录终止或RNase E和RNase III对初级转录本的加工所致。这些转录物的主要降解途径涉及结构基因下游的限速RNase E切割,该酶去除了转录终止子的3'末端茎环结构。这种结构可保护信息免受3'-5'核酸外切酶的攻击,其去除会导致多核苷酸磷酸化酶和RNase II非常迅速地降解转录物。多核苷酸磷酸化酶还能够缓慢降解具有终止子3'末端发夹的mRNA。相反,RNase II似乎可以保护保留3'发夹结构的rpsO mRNA。即使在缺乏RNase E和多核苷酸磷酸化酶的菌株中,在RNase II失活后也观察到rpsO mRNA的快速降解。参与该降解途径的酶是未知的。我们检测到不稳定的延长的rpsO mRNA,可能是由于在转录本3'端添加了核苷酸所致。

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