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首页> 外文期刊>Nucleic acids research >RNA processing machineries in Archaea: the 5′-3′ exoribonuclease aRNase J of the β-CASP family is engaged specifically with the helicase ASH-Ski2 and the 3′-5′ exoribonucleolytic RNA exosome machinery
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RNA processing machineries in Archaea: the 5′-3′ exoribonuclease aRNase J of the β-CASP family is engaged specifically with the helicase ASH-Ski2 and the 3′-5′ exoribonucleolytic RNA exosome machinery

机译:Archaea中的RNA加工机械:β-Casp系列的5'-3'放电核酸酶Arnase J专门与氦胺 - Ski2和3'-5'外核酸核酸RNA外泌核机械接通

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A network of RNA helicases, endoribonucleases and exoribonucleases regulates the quantity and quality of cellular RNAs. To date, mechanistic studies focussed on bacterial and eukaryal systems due to the challenge of identifying the main drivers of RNA decay and processing in Archaea. Here, our data support that aRNase J, a 5′-3′ exoribonuclease of the β-CASP family conserved in Euryarchaeota, engages specifically with a Ski2-like helicase and the RNA exosome to potentially exert control over RNA surveillance, at the vicinity of the ribosome. Proteomic landscapes and direct protein–protein interaction analyses, strengthened by comprehensive phylogenomic studies demonstrated that aRNase J interplay with ASH-Ski2 and a cap exosome subunit. Finally, Thermococcus barophilus whole-cell extract fractionation experiments provide evidences that an aRNase J/ASH-Ski2 complex might exist in vivo and hint at an association of aRNase J with the ribosome that is emphasised in absence of ASH-Ski2. Whilst aRNase J homologues are found among bacteria, the RNA exosome and the Ski2-like RNA helicase have eukaryotic homologues, underlining the mosaic aspect of archaeal RNA machines. Altogether, these results suggest a fundamental role of β-CASP RNase/helicase complex in archaeal RNA metabolism.
机译:RNA螺旋酶,内衣核酸酶和外部核酸酶的网络调节细胞RNA的数量和质量。迄今为止,由于鉴定RNA衰变的主要驱动因素和古代亚洲的加工挑战,机械研究侧重于细菌和真核生物。在这里,我们的数据支持Arnase J,Arnase J是β-Casp系列的5'-3'Exoribonuclease在euryActhaeota中,特别是用Ski2样的螺旋酶和RNA外来组成,以潜在地施加对RNA监测的控制,在附近核糖体。综合系统核糖研究中的蛋白质组学景观和直接蛋白质 - 蛋白质相互作用分析证明了Arnase J与灰分形式的相互作用和帽外外亚基相互作用。最后,热电偶Barophilus全细胞提取物分馏实验提供了证据,即Arnase J / Ash-Ski2络合物可能存在于Arnase j与核糖体的核糖组合中的体内和暗示中,所述核糖体在不存在灰分中的情况下强调。在细菌中发现Arnase J同源物,RNA外出组和SKI2样RNA螺旋酶具有真核同源物,下划线下划线的古RNA机器的镶嵌方面。总之,这些结果表明β-Casp RNase / Helicase复合物在古射RNA代谢中的基本作用。

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