Importance of introns for expression of mouse ribosomal protein gene rpL32.
Open Access
- 1 May 1989
- journal article
- research article
- Published by Taylor & Francis in Molecular and Cellular Biology
- Vol. 9 (5) , 2075-2082
- https://doi.org/10.1128/mcb.9.5.2075
Abstract
The importance of intronic sequences for expression of the mouse ribosomal protein gene rpL32 was evaluated by transfection experiments with a series of mutant constructs in which one or more of the three rpL32 introns was totally or partially deleted. When transiently transfected into monkey kidney (COS) cells or stably transfected into mouse L cells, a mutant that lacked all three introns was completely inactive. Constructs that contained intron 1, either alone or in combination with another intron, were expressed as efficiently as was the normal intact rpL32 gene. Constructs that lacked intron 1 but contained another spliceable intron, even one from a foreign gene, were expressed at about 10 to 20% of the maximum level. These results indicated that intron 1 contains an element that increases the level of expression by 5- to 10-fold. A comparison of internal deletion mutants localized the element to within the first 27 base pairs of intron 1. Nuclear run-on experiments with stably transfected COS cells demonstrated that this element functions at the transcriptional level. The element was inactive when translocated to a position upstream of the transcriptional start site or to a position within intron 3, which indicated that it does not have the properties of a typical enhancer. From these and other results, we conclude that introns have both a general and a specific role in rpL32 expression. The general role, which can be satisfied by any spliceable intron, is to ensure an efficient yield of RNA transcripts. The specific role is uniquely attributable to intron 1, which contains a transcriptional regulatory element near its 5' end.This publication has 24 references indexed in Scilit:
- Introns increase gene expression in cultured maize cells.Genes & Development, 1987
- Identification of a cell-specific transcriptional enhancer in the first intron of the mouse alpha 2 (type I) collagen gene.Proceedings of the National Academy of Sciences, 1987
- ALTERNATIVE SPLICING: A UBIQUITOUS MECHANISM FOR THE GENERATION OF MULTIPLE PROTEIN ISOFORMS FROM SINGLE GENESAnnual Review of Biochemistry, 1987
- Autogenous regulation of splicing of the transcript of a yeast ribosomal protein gene.Proceedings of the National Academy of Sciences, 1986
- Expression of a bean storage protein ‘phaseolin minigene’ in foreign plant tissuesGene, 1986
- Inducible transcription of the unrearranged kappa constant region locus is a common feature of pre-B cells and does not require DNA or protein synthesis.Proceedings of the National Academy of Sciences, 1985
- Expression of two Xenopus laevis ribosomal protein genes in injected frog oocytesJournal of Molecular Biology, 1984
- A lymphocyte-specific cellular enhancer is located downstream of the joining region in immunoglobulin heavy chain genesCell, 1983
- Rescue of a splicing defective mutant by insertion of an heterologous intronNature, 1980
- Splicing and the formation of stable RNACell, 1979