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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 ArchiMer
Phung, Duy Khanh; Etienne, Clarisse; Batista, Manon; Langendijk-genevaux, Petra; Moalic, Yann; Laurent, Sebastien; Liuu, Sophie; Morales, Violette; Jebbar, Mohamed; Fichant, Gwennaele; Bouvier, Marie; Flament, Didier; Clouet-d’orval, Béatrice.
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,...
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Ano: 2020 URL: https://archimer.ifremer.fr/doc/00610/72250/71056.pdf
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