A quantitative analysis of intron effects on mammalian gene expression
Open Access
- 1 May 2003
- journal article
- Published by Cold Spring Harbor Laboratory in RNA
- Vol. 9 (5), 607-617
- https://doi.org/10.1261/rna.5250403
Abstract
In higher eukaryotes, intron-containing and intronless versions of otherwise identical genes can exhibit dramatically different expression profiles. Introns and the act of their removal by the spliceosome can affect gene expression at many different levels, including transcription, polyadenylation, mRNA export, translational efficiency, and the rate of mRNA decay. However, the extent to which each of these steps contributes to the overall effect of any one intron on gene expression has not been rigorously tested. Here we report construction and initial characterization of a luciferase-based reporter system for monitoring the effects of individual introns and their position within the gene on protein expression in mammalian cells. Quantitative analysis of constructs containing human TPI intron 6 at two different positions within theRenillaluciferase open reading frame revealed that this intron acts primarily to enhance mRNA accumulation. Spliced mRNAs also exhibited higher translational yields than did intronless transcripts. However, nucleocytoplasmic mRNA distribution and mRNA stability were largely unaffected. These findings were extended to two other introns in a TCR-β minigene.Keywords
This publication has 51 references indexed in Scilit:
- Promoter proximal splice sites enhance transcriptionGenes & Development, 2002
- U1 snRNA associates with TFIIH and regulates transcriptional initiationNature Structural & Molecular Biology, 2002
- An extensive network of coupling among gene expression machinesNature, 2002
- Messenger-RNA-binding proteins and the messages they carryNature Reviews Molecular Cell Biology, 2002
- Replacement of the yeast TRP4 3??? untranslated region by a hammerhead ribozyme results in a stable and efficiently exported mRNA that lacks a poly(A) tailRNA, 2002
- Role of the Nonsense-Mediated Decay Factor hUpf3 in the Splicing-Dependent Exon-Exon Junction ComplexScience, 2001
- Communication of the Position of Exon-Exon Junctions to the mRNA Surveillance Machinery by the Protein RNPS1Science, 2001
- Introns boost transgene expression in Drosophila melanogasterMolecular Genetics and Genomics, 1997
- T Cell Receptor (TCR) Mini-Gene mRNA Expression Regulated by Nonsense Codons: A Nuclear-associated Translation-like MechanismThe Journal of Experimental Medicine, 1997
- Multiple functions for the poly(A)-binding protein in mRNA decapping and deadenylation in yeast.Genes & Development, 1995