A Novel Yeast U2 snRNP Protein, Snu17p, Is Required for the First Catalytic Step of Splicing and for Progression of Spliceosome Assembly
- 1 May 2001
- journal article
- research article
- Published by Taylor & Francis in Molecular and Cellular Biology
- Vol. 21 (9) , 3037-3046
- https://doi.org/10.1128/mcb.21.9.3037-3046.2001
Abstract
We have isolated and microsequenced Snu17p, a novel yeast protein with a predicted molecular mass of 17 kDa that contains an RNA recognition motif. We demonstrate that Snu17p binds specifically to the U2 small nuclear ribonucleoprotein (snRNP) and that it is part of the spliceosome, since the pre-mRNA and the lariat-exon 2 are specifically coprecipitated with Snu17p. Although the SNU17gene is not essential, its knockout leads to a slow-growth phenotype and to a pre-mRNA splicing defect in vivo. In addition, the first step of splicing is dramatically decreased in extracts prepared from thesnu17 deletion (snu17Δ) mutant. This defect is efficiently reversed by the addition of recombinant Snu17p. To investigate the step of spliceosome assembly at which Snu17p acts, we have used nondenaturing gel electrophoresis. In Snu17p-deficient extracts, the spliceosome runs as a single slowly migrating complex. In wild-type extracts, usually at least two distinct complexes are observed: the prespliceosome, or B complex, containing the U2 but not the U1 snRNP, and the catalytically active spliceosome, or A complex, containing the U2, U6, and U5 snRNPs. Northern blot analysis and affinity purification of the snu17Δ spliceosome showed that it contains the U1, U2, U6, U5, and U4 snRNPs. The unexpected stabilization of the U1 snRNP and the lack of dissociation of the U4 snRNP suggest that loss of Snu17p inhibits the progression of spliceosome assembly prior to U1 snRNP release and after [U4/U6.U5] tri-snRNP addition.Keywords
This publication has 49 references indexed in Scilit:
- Functional Cus1p Is Found with Hsh155p in a Multiprotein Splicing Factor Associated with U2 snRNAMolecular and Cellular Biology, 2000
- CUS1, a suppressor of cold-sensitive U2 snRNA mutations, is a novel yeast splicing factor homologous to human SAP 145.Genes & Development, 1996
- Disruption of base pairing between the 5′ splice site and the 5′ end of U1 snRNA is required for spliceosome assemblyCell, 1993
- Basic Local Alignment Search ToolJournal of Molecular Biology, 1990
- Basic local alignment search toolJournal of Molecular Biology, 1990
- In vitro assembly of yeast U6 snRNP: a functional assay.Genes & Development, 1989
- Identification of functional U1 snRNA-pre-mRNA complexes committed to spliceosome assembly and splicingCell, 1989
- Spliceosome assembly in yeast.Genes & Development, 1987
- Electrophoretic separation of complexes involved in the splicing of precursors to mRNAsPublished by Elsevier ,1986
- A compensatory base change in U1 snRNA suppresses a 5′ splice site mutationCell, 1986