A Premature Termination Codon Interferes with the Nuclear Function of an Exon Splicing Enhancer in an Open Reading Frame-Dependent Manner
- 1 March 1999
- journal article
- research article
- Published by Taylor & Francis in Molecular and Cellular Biology
- Vol. 19 (3) , 1640-1650
- https://doi.org/10.1128/mcb.19.3.1640
Abstract
Premature translation termination codon (PTC)-mediated effects on nuclear RNA processing have been shown to be associated with a number of human genetic diseases; however, how these PTCs mediate such effects in the nucleus is unclear. A PTC at nucleotide (nt) 2018 that lies adjacent to the 5′ element of a bipartite exon splicing enhancer within the NS2-specific exon of minute virus of mice P4 promoter-generated pre-mRNA caused a decrease in the accumulated levels of P4-generated R2 mRNA relative to P4-generated R1 mRNA, although the total accumulated levels of P4 product remained the same. This effect was seen in nuclear RNA and was independent of RNA stability. The 5′ and 3′ elements of the bipartite NS2-specific exon enhancer are redundant in function, and when the 2018 PTC was combined with a deletion of the 3′ enhancer element, the exon was skipped in the majority of the viral P4-generated product. Such exon skipping in response to a PTC, but not a missense mutation at nt 2018, could be suppressed by frame shift mutations in either exon of NS2 which reopened the NS2 open reading frame, as well as by improvement of the upstream intron 3′ splice site. These results suggest that a PTC can interfere with the function of an exon splicing enhancer in an open reading frame-dependent manner and that the PTC is recognized in the nucleus.Keywords
This publication has 39 references indexed in Scilit:
- Proofreading and Aminoacylation of tRNAs Before Export from the NucleusScience, 1998
- Disruption of the splicing enhancer sequence within exon 27 of the dystrophin gene by a nonsense mutation induces partial skipping of the exon and is responsible for Becker muscular dystrophy.Journal of Clinical Investigation, 1997
- Nonsense Mutations Inhibit RNA Splicing in a Cell-Free System: Recognition of Mutant Codon Is Independent of Protein SynthesisCell, 1996
- Maintenance of an open reading frame as an additional level of scrutiny during splice site selectionNature Genetics, 1994
- RNA-RNA interactions in the spliceosome: Unraveling the ties that bindCell, 1994
- mRNA surveillance by the Caenorhabditis elegans smg genes.Genes & Development, 1993
- A nonsense mutation and exon skipping in the Fanconi anaemia group C geneHuman Molecular Genetics, 1993
- Analyis of factor VIII mRNA reveals defects in everyone of 28 haemophilia A patientsHuman Molecular Genetics, 1993
- Nonsense mutations inhibit splicing of MVM RNA in cis when they interrupt the reading frame of either exon of the final spliced product.Genes & Development, 1992
- U5 snRNA interacts with exon sequences at 5′ and 3′ splice sitesCell, 1992