A mutational analysis of spliceosome assembly: evidence for splice site collaboration during spliceosome formation.
Open Access
- 1 August 1987
- journal article
- Published by Cold Spring Harbor Laboratory in Genes & Development
- Vol. 1 (6) , 532-543
- https://doi.org/10.1101/gad.1.6.532
Abstract
We have analyzed the pathway of mammalian spliceosome assembly in vitro using a mobility retardation assay. The binding of splicing complexes to both wild-type and mutant beta-globin pre-RNAs was studied. Three kinetically related, ATP-dependent complexes, alpha, beta, and gamma, were resolved with a wild-type beta-globin substrate. These complexes formed, both temporally and in order of decreasing mobility, alpha----beta----gamma. All three complexes contained U2 snRNA. The RNA intermediates of splicing, i.e., free 5' exon and intron lariat + 3' exon, were found predominantly in the gamma complex. The RNA products of splicing, i.e., ligated exons and fully excised intron lariat, were found in separate, postsplicing complexes which appeared to form via breakdown of gamma. Mutations of the 5' splice site, which caused an accumulation of splicing intermediates, also resulted in accumulation of the gamma complex. Mutations of the 3' splice site, which severely inhibited splicing, reduced the efficiency and altered the pattern of complex formation. Surprisingly, the analysis of double mutants, with sequence alterations at both the 5' and 3' splice sites, revealed that the 5' splice site genotype was important for the efficient formation of a U2 snRNA-containing alpha complex at the 3' splice site. Thus, it appears that a collaborative interaction between the separate 5' and 3' splice sites promotes spliceosome assembly.Keywords
This publication has 25 references indexed in Scilit:
- Interactions between small nuclear ribonucleoprotein particles in formation of spliceosomesCell, 1987
- A protein that specifically recognizes the 3′ splice site of mammalian pre-mRNA introns is associated with a small nuclear ribonucleoproteinCell, 1986
- Affinity Chromatography of Splicing Complexes: U2, U5, and U4 + U6 Small Nuclear Ribonucleoprotein Particles in the SpliceosomeScience, 1986
- A compensatory base change in U1 snRNA suppresses a 5′ splice site mutationCell, 1986
- Pre-mRNA splicing in vitro requires intact U4/U6 small nuclear ribonucleoproteinCell, 1986
- U1, U2, and U4/U6 small nuclear ribonucleoproteins are required for in vitro splicing but not polyadenylationCell, 1986
- Specific small nuclear RNAs are associated with yeast spliceosomesCell, 1986
- The "Spliceosome": Yeast Pre-Messenger RNA Associates with a 40 S Complex in a Splicing-Dependent ReactionScience, 1985
- A point mutation in the conserved hexanucleotide at a yeast 5′ splice junction uncouples recognition, cleavage, and ligationCell, 1985
- The 5′ terminus of the RNA moiety of U1 small nuclear ribonucleoprotein particles is required for the splicing of messenger RNA precursorsCell, 1984