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Identification of an RNase J ortholog in Sulfolobus solfataricus: implications for 5'-to-3' directional decay and 5'-end protection of mRNA in Crenarchaeota.

机译:识别Sulfolobus solfataricus中的RNase J直系同源物:对Crenarchaeota中mRNA的5'到3'方向衰减和5'端保护的含义。

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In both Bacteria and Eukaryotes, degradation is known to start at the 5' and at the 3' extremities of mRNAs. Until the recent discovery of 5'-to-3' exoribonucleases in hyperthermophilic Euryarchaeota, the exosome was assumed to be the key enzyme in mRNA degradation in Archaea. By means of zymogram assays and bioinformatics, we have identified a 5'-to-3' exoribonuclease activity in the crenarchaeum Sulfolobus solfataricus (Sso), which is affected by the phosphorylation state of the 5'-end of the mRNA. The protein comprises typical signature motifs of the beta-CASP family of metallo-beta-lactamases and was termed Sso-RNAse J. Thus, our study provides the first evidence for a 5'-to-3' directional mRNA decay pathway in the crenarchaeal clade of Archaea. In Bacteria the 5'-end of mRNAs is often protected by a tri-phosphorylated 5'-terminus and/or by stem-loop structures, while in Eukaryotes the cap-binding complex is responsible for this task. Here, we show that binding of translation initiation factor a/eIF2(gamma) to the 5'-end of mRNA counteracts the 5'-to-3' exoribonucleolytic activity of Sso-RNase J in vitro. Hence, 5'-to-3' directional decay and 5'-end protection appear to be conserved features of mRNA turnover in all kingdoms of life.
机译:在细菌和真核生物中,降解都始于mRNA的5'和3'末端。直到最近在超嗜热性真细菌中发现5'至3'外切核糖核酸酶之前,外泌体才被认为是古细菌中mRNA降解的关键酶。通过酶谱测定法和生物信息学,我们已经鉴定了C.sulfolobus solfataricus(Sso)中的5'至3'exoribonuclease活性,该活性受mRNA 5'末端磷酸化状态的影响。该蛋白包含金属-β-内酰胺酶β-CASP家族的典型特征性基序,被称为Sso-RNAseJ。因此,我们的研究为颅底5'至3'方向的mRNA衰减途径提供了第一个证据。的古细菌。在细菌中,mRNA的5'末端通常受到三磷酸化的5'末端和/或茎环结构的保护,而在真核生物中,帽结合复合物负责此任务。在这里,我们显示翻译起始因子a / eIF2(γ)与mRNA的5'-末端的结合抵消了体外Sso-RNase J的5'至3'核糖核酸外切活性。因此,在所有生命王国中,5'到3'方向的衰变和5'端的保护似乎是mRNA转换的保守特征。

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