Oligopyrimidine tract at the 5' end of mammalian ribosomal protein mRNAs is required for their translational control.
- 15 April 1991
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 88 (8) , 3319-3323
- https://doi.org/10.1073/pnas.88.8.3319
Abstract
Mammalian ribosomal protein (rp) mRNAs are subject to translational control, as illustrated by their selective release from polyribosomes in growth-arrested cells and their underrepresentation in polysomes in normally growing cells. In the present experiments, we have examined whether the translational control of rp mRNAs is attributable to the distinctive features of their 5' untranslated region, in particular to the oligopyrimidine tract adjacent to the cap structure. Murine lymphosarcoma cells were transfected with chimeric genes consisting of selected regions of rp mRNA fused to non-rp mRNA segments, and the translational efficiency of the resulting chimeric mRNAs was assessed in cells that either were growing normally or were growth-arrested by glucocorticoid treatment. We observed that translational control of rpL32 mRNA was abolished when its 5' untranslated region was replaced by that of beta-actin. At the same time, human growth hormone (hGH) mRNA acquired the typical behavior of rp mRNAs when it was preceded by the first 61 nucleotides of rpL30 mRNA or the first 29 nucleotides of rpS16 mRNA. Moreover, the translational control of rpS16-hGH mRNA was abolished by the substitution of purines into the pyrimidine tract or by shortening it from eight to six residues with a concomitant cytidine----uridine change at the 5' terminus. These results indicate that the 5'-terminal pyrimidine tract plays a critical role in the translational control mechanism. Possible factors that might interact with this translational cis regulatory element are discussed.Keywords
This publication has 46 references indexed in Scilit:
- Cis-Trans Models for Post-Transcriptional Gene RegulationScience, 1989
- Equipotent mouse ribosomal protein promoters have a similar architecture that includes internal sequence elements.Genes & Development, 1989
- Expression of ribosomal protein genes and regulation of ribosome biosynthesis in Xenopus developmentTrends in Biochemical Sciences, 1989
- Isolation and nucleotide sequences of cDNAs for Xenopus laevis ribosomal protein S8: similarities in the 5′ and 3′ untranslated regions of mRNAs for various r-proteinsGene, 1988
- Cap recognition and the entry of mRNA into the protein synthesis initiation cycleTrends in Biochemical Sciences, 1988
- Translational regulation of mRNAs for ribosomal proteins during early Drosophila developmentBiochemistry, 1985
- Cell-type specificity of iminunoglobulin gene expression is regulated by at least three DNA sequence elementsCell, 1985
- The gene family encoding the mouse ribosomal protein L32 contains a uniquely expressed intron-containing gene and an unmutated processed geneCell, 1984
- Lodish model and regulation of ribosomal protein synthesis by insulin-deficient chick embryo fibroblastsBiochemistry, 1981
- Comparison of methylated sequences in messenger RNA and heterogeneous nuclear RNA from mouse L cellsJournal of Molecular Biology, 1977