Nucleic Acids Research, Vol 24, Issue 6 1105-1111, Copyright © 1996 by Oxford University Press
NA Datson, E van de Vosse, HG Dauwerse, M Bout, GJ van Ommen and JT den Dunnen
To facilitate the scanning of large genomic regions for the presence of
exonic gene segments we have constructed a cosmid-based exon trap vector.
The vector serves a dual purpose since it is also suitable for contig
construction and physical mapping. The exon trap cassette of vector sCOGH1
consists of the human growth hormone gene driven by the mouse
mettallothionein-1 promoter. Inserts are cloned in the multicloning site
located in intron 2 of the hGH gene. The efficiency of the system is
demonstrated with cosmids containing multiple exons of the Duchenne
Muscular Dystrophy gene. All exons present in the inserts were successfully
retrieved and no cryptic products were detected. Up to seven exons were
isolated simultaneously in a single spliced product. The system has been
extended by a transcription-translation- test protocol to determine the
presence of large open reading frames in the trapped products, using a
combination of tailed PCR primers directing protein synthesis in three
different reading frames, followed by in vitro transcription-translation.
Having larger stretches of coding sequence in a single exon trap product
rather than small single exons greatly facilitates further analysis of
potential genes and offers new possibilities for direct mutation analysis
of exon trap material.
ARTICLES
Scanning for genes in large genomic regions: cosmid-based exon trapping of multiple exons in a single product
Department of Human Genetics, Leiden University, The Netherlands.
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