RNA polymerase II transcribes genes encoding proteins and a large number of small stable RNAs. While pre-mRNA 3'-end formation requires a machinery ensuring tight coupling between cleavage and polyadenylation, small RNAs utilize polyadenylation-independent pathways. In yeast, specific factors required for snRNA and snoRNA 3'-end formation were characterized as components of the APT complex that is associated with the core complex of the cleavage/polyadenylation machinery (core-CPF). Other essential factors were identified as independent components: Nrd1p, Nab3p and Sen1p. Here we report that mutations in the conserved box D of snoRNAs and in the snoRNP-specific factor Nop1p interfere with transcription and 3'-end formation of box C/D snoRNAs. We demonstrate that Nop1p is associated with box C/D snoRNA genes and that it interacts with APT components. These data suggest a mechanism of quality control in which efficient transcription and 3'-end formation occur only when nascent snoRNAs are successfully assembled into functional particles.

Coupling between snoRNP assembly and 3' processing controls box C/D snoRNA biosynthesis in yeast / Morlando, Mariangela; Greco, P.; Ballarino, Monica; Caffarelli, E.; Dichtl, B.; Bozzoni, Irene. - In: EMBO JOURNAL. - ISSN 0261-4189. - STAMPA. - 23:(2004), pp. 2392-2401. [10.1038/sj.emboj.7600254]

Coupling between snoRNP assembly and 3' processing controls box C/D snoRNA biosynthesis in yeast.

MORLANDO, MARIANGELA;BALLARINO, MONICA;BOZZONI, Irene
2004

Abstract

RNA polymerase II transcribes genes encoding proteins and a large number of small stable RNAs. While pre-mRNA 3'-end formation requires a machinery ensuring tight coupling between cleavage and polyadenylation, small RNAs utilize polyadenylation-independent pathways. In yeast, specific factors required for snRNA and snoRNA 3'-end formation were characterized as components of the APT complex that is associated with the core complex of the cleavage/polyadenylation machinery (core-CPF). Other essential factors were identified as independent components: Nrd1p, Nab3p and Sen1p. Here we report that mutations in the conserved box D of snoRNAs and in the snoRNP-specific factor Nop1p interfere with transcription and 3'-end formation of box C/D snoRNAs. We demonstrate that Nop1p is associated with box C/D snoRNA genes and that it interacts with APT components. These data suggest a mechanism of quality control in which efficient transcription and 3'-end formation occur only when nascent snoRNAs are successfully assembled into functional particles.
2004
Base Sequence, DNA Primers, Mutation, Plasmids, Ribonucleoproteins; Small Nucleolar; metabolism, Saccharomyces cerevisiae; metabolism
01 Pubblicazione su rivista::01a Articolo in rivista
Coupling between snoRNP assembly and 3' processing controls box C/D snoRNA biosynthesis in yeast / Morlando, Mariangela; Greco, P.; Ballarino, Monica; Caffarelli, E.; Dichtl, B.; Bozzoni, Irene. - In: EMBO JOURNAL. - ISSN 0261-4189. - STAMPA. - 23:(2004), pp. 2392-2401. [10.1038/sj.emboj.7600254]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/15418
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