Sequences downstream of AAUAAA signals affect pre-mRNA cleavage and polyadenylation in vitro both directly and indirectly.
Open Access
- 1 April 1989
- journal article
- research article
- Published by Taylor & Francis in Molecular and Cellular Biology
- Vol. 9 (4) , 1759-1771
- https://doi.org/10.1128/mcb.9.4.1759
Abstract
To investigate the role of sequences lying downstream of the conserved AAUAAA hexanucleotide in pre-mRNA cleavage and polyadenylation, deletions or substitutions were constructed in polyadenylation signals from simian virus 40 and adenovirus, and their effects were assayed in both crude and fractionated HeLa cell nuclear extracts. As expected, these sequences influenced the efficiency of both cleavage and polyadenylation as well as the accuracy of the cleavage reaction. Sequences near or upstream of the actual site of poly(A) addition appeared to specify a unique cleavage site, since their deletion resulted, in some cases, in heterogeneous cleavage. Furthermore, the sequences that allowed the simian virus 40 late pre-RNA to be cleaved preferentially by partially purified cleavage activity were also those at the cleavage site itself. Interestingly, sequences downstream of the cleavage site interacted with factors not directly involved in catalyzing cleavage and polyadenylation, since the effects of deletions were substantially diminished when partially purified components were used in assays. In addition, these sequences contained elements that could affect 3'-end formation both positively and negatively.This publication has 59 references indexed in Scilit:
- Separation and characterization of a poly(A) polymerase and a cleavage/specificity factor required for pre-mRNA polyadenylationCell, 1988
- Electrophoretic separation of polyadenylation-specific complexes.Genes & Development, 1987
- A protein that specifically recognizes the 3′ splice site of mammalian pre-mRNA introns is associated with a small nuclear ribonucleoproteinCell, 1986
- Accurate cleavage and polyadenylation of exogenous RNA substrateCell, 1985
- A sequence downstream of AAUAAA is required for rabbit β-globin mRNA 3′-end formationNature, 1984
- Requirement of a downstream sequence for generation of a poly(A) addition siteCell, 1984
- α-Thalassaemia caused by a polyadenylation signal mutationNature, 1983
- Inhibition of RNA cleavage but not polyadenylation by a point mutation in mRNA 3′ consensus sequence AAUAAANature, 1983
- Accurate and specific polyadenylation of mRNA precursors in a soluble whole-cell lysateCell, 1983
- 3′ Non-coding region sequences in eukaryotic messenger RNANature, 1976