Unusual aspects of in vitro RNA processing in the 3' regions of the GAL1, GAL7, and GAL10 genes in Saccharomyces cerevisiae.
Open Access
- 1 October 1992
- journal article
- Published by Taylor & Francis in Molecular and Cellular Biology
- Vol. 12 (10) , 4262-4270
- https://doi.org/10.1128/mcb.12.10.4262
Abstract
A striking feature of the 3'-end regions in polymerase II transcripts of Saccharomyces cerevisiae adjacent to their processing and polyadenylation sites is the lack of well-defined signal elements. Nonetheless, essential signals have seemed to be confined to compact regions in vivo, and we find that a short RNA with only 70 bases of GAL7 sequence upstream and 8 to 10 bases downstream of the poly(A) addition site is processed in vitro, as is an analogous CYC1 pre-RNA. Specific polyadenylation of a precleaved species further delimits the poly(A) signal and rules out obligatory coupling between cleavage and poly(A) addition. Although little proximal and even less distal sequence is required for accurate cleavage with CYC1 and GAL7, we have been unable to identify common features to which processing could be ascribed. We therefore turned to the coregulated set of genes in the galactose cluster (GAL1, GAL7, and GAL10) to assay their corresponding pre-mRNAs in vitro, in hopes of finding a common theme. By contrast to GAL7, short pre-mRNAs corresponding to GAL1 and GAL10 fail to be cleaved detectably, and only much longer transcripts are susceptible to processing. This indicates that signals, even if preserved, are more widely dispersed than the poly(A) addition site, and these results are unchanged whether extracts are from cells grown on glucose or galactose. As a further surprise, RNAs corresponding to the antisense orientation of the 3'-end regions of all three GAL genes are also effective substrates for the processing machinery in vitro. Computer analysis reveals the presence of polydisperse dyad symmetries that might account for these observations.Keywords
This publication has 24 references indexed in Scilit:
- Point mutations upstream of the yeast ADH2 poly(A) site significantly reduce the efficiency of 3'-end formation.Molecular and Cellular Biology, 1991
- Poly(A) signalsCell, 1991
- Polymerase chain reaction mapping of yeastGAL7mRNA polyadenylation sites demonstrates that 3′ end processing invitrofaithfully reproduces the 3′ ends observedin vivoNucleic Acids Research, 1991
- RNA processing in vitro produces mature 3' ends of a variety of Saccharomyces cerevisiae mRNAs.Molecular and Cellular Biology, 1990
- Transcription terminates near the poly(A) site in the CYC1 gene of the yeast Saccharomyces cerevisiae.Proceedings of the National Academy of Sciences, 1989
- Orientation-dependent function of a short CYC1 DNA fragment in directing mRNA 3' end formation in yeast.Proceedings of the National Academy of Sciences, 1988
- A functionally redundant downstream sequence in SV40 late pre-mRNA is required for mRNA 3'-end formation and for assembly of a precleavage complex in vitro.Journal of Biological Chemistry, 1988
- Components required forin vitrocleavage and polyadenylation of eukaryotic mRNANucleic Acids Research, 1988
- Mutationally altered 3′ ends of yeast CYC1 mRNA affect transcript stability and translational efficiencyJournal of Molecular Biology, 1984
- DNA sequence required for efficient transcription termination in yeastCell, 1982