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J Med Genet. 2005 October; 42(10): 737–748. doi: 10.1136/jmg.2004.029538. | PMCID: PMC1735933 |
Splicing in action: assessing disease causing sequence changes D Baralle and M Baralle Department of Medical Genetics, Box 134, Addenbrooke's Hospital, Hills Road, Cambridge, CB2 2QQ, UK. Email: db314/at/cam.ac.uk Variations in new splicing regulatory elements are difficult to identify exclusively by sequence inspection and may result in deleterious effects on precursor (pre) mRNA splicing. These mutations can result in either complete skipping of the exon, retention of the intron, or the introduction of a new splice site within an exon or intron. Sometimes mutations that do not disrupt or create a splice site activate pre-existing pseudo splice sites, consistent with the proposal that introns contain splicing inhibitory sequences. These variants can also affect the fine balance of isoforms produced by alternatively spliced exons and in consequence cause disease. Available genomic pathology data reveal that we are still partly ignorant of the basic mechanisms that underlie the pre-mRNA splicing process. The fact that human pathology can provide pointers to new modulatory elements of splicing should be exploited. The Full Text of this article is available as a PDF (308K). These references are in PubMed. This may not be the complete list of references from this article. - Cáceres Javier F, Kornblihtt Alberto R. Alternative splicing: multiple control mechanisms and involvement in human disease. Trends Genet. 2002 Apr;18(4):186–193. [PubMed]
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