mRNA leader length and initiation codon context determine alternative AUG selection for the yeast gene MOD5.
- 1 November 1991
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 88 (21) , 9789-9793
- https://doi.org/10.1073/pnas.88.21.9789
Abstract
MOD5, a nuclear gene of Saccharomyces cerevisiae, encodes two isozymic forms of a tRNA-modification enzyme. These enzymes modify both cytoplasmic and mitochondrial tRNAs. Two inframe ATGs of the MOD5 gene are used for initiation of translation, and the form of the protein translated from the first AUG is imported into mitochondria. Protein translated from the second AUG functions in the cytoplasm. Since all transcripts contain both of these translational start sites and two proteins are made, the question arises as to the factors that influence the translation start-site choice. Extending the 59 ends of the MOD5 mRNA to include leader sequences of the ADH1 (alcohol dehydrogenase defective) transcript produces significant changes in the choice of AUGs. This suggests that for wild-type MOD5 transcripts, the length or structure of the leader sequence plays a role in AUG choice. The nucleotides surrounding the first ATG of MOD5 also have an effect on translation initiation. Altering these nucleotides changes initiation choice and suggests that ribosomal bypass of a suboptimal AUG is another mechanism controlling the alternate use of two initiation codons. Our data support the model that at least one MOD5 transcript is able to produce two proteins with different N-terminal sequences.Keywords
This publication has 42 references indexed in Scilit:
- Enhanced translational utilization of chloroplast ribosomal protein mRNAs from two AUG codons shown by site-directed mutationBiochemistry, 1990
- The yeast RNA1 gene product necessary for RNA processing is located in the cytosol and apparently excluded from the nucleus.The Journal of cell biology, 1990
- Sequences that surround the stop codons of upstream open reading frames in GCN4 mRNA determine their distinct functions in translational control.Genes & Development, 1989
- Sequence and structural features associated with translational initiator regions in yeast — a reviewGene, 1987
- Point mutations define a sequence flanking the AUG initiator codon that modulates translation by eukaryotic ribosomesCell, 1986
- Lariat structures are in vivo intermediates in yeast pre-mRNA splicingCell, 1984
- Eukaryotic ribosomes can recognize preproinsulin initiation codons irrespective of their position relative to the 5′ end of mRNANature, 1982
- Functional significance and evolutionary development of the 5′-terminal regions of immunoglobulin variable-region genesCell, 1982
- Defects in modification of cytoplasmic and mitochondrial transfer RNAs are caused by single nuclear mutationsCell, 1982
- Two differentially regulated mRNAs with different 5′ ends encode secreted and intracellular forms of yeast invertaseCell, 1982