Musashi binding elements in Zika virus 3'UTR
A comparative analysis of Musashi binding element accessibility in Zika virus and related flavivirus 3' UTRs using thermodynamic RNA structure modeling.
A comparative analysis of Musashi binding element accessibility in Zika virus and related flavivirus 3' UTRs using thermodynamic RNA structure modeling.
This paper suggests that the archaeal translation factor aIF5A in Sulfolobus solfataricus is not limited to translation, but may also act directly in RNA metabolism through endoribonucleolytic activity.
This paper shows that the archaeal Sm-like proteins SmAP1 and SmAP2 in Sulfolobus solfataricus interact with the exosome and stimulate A-rich tailing of transcripts, linking RNA-binding proteins to RNA turnover in archaea.