Target-Selected Inactivation of the Zebrafish rag1 Gene
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- 5 July 2002
- journal article
- other
- Published by American Association for the Advancement of Science (AAAS) in Science
- Vol. 297 (5578) , 99-102
- https://doi.org/10.1126/science.1071762
Abstract
The zebrafish has become a favorite organism for genetic analysis of vertebrate development, but methods for generating mutants by reverse genetic approaches have been lacking. We report a method to obtain stable mutants of a gene based on knowledge of the gene sequence only. Parental fish were mutagenized withN-ethyl-N-nitrosourea; in 2679 F1fish, the rag1 gene was analyzed for heterozygous mutations by resequencing. In total, we found 15 mutations: 9 resulted in amino acid substitutions and 1 resulted in a premature stop codon. This truncation mutant was found to be homozygous viable and defective in V(D)J joining. Although presumably immune deficient, these homozygous rag1 mutant fish are able to reach adulthood and are fertile. As sperm samples from all 2679 F1 fish were collected and cryopreserved, we have in principle generated a mutant library from which mutants of most zebrafish genes can be isolated.Keywords
This publication has 31 references indexed in Scilit:
- The LN54 Radiation Hybrid Map of Zebrafish Expressed SequencesGenome Research, 2001
- Automated Finishing with AutofinishGenome Research, 2001
- Effective targeted gene ‘knockdown’ in zebrafishNature Genetics, 2000
- RAG and RAG defectsCurrent Opinion in Immunology, 1999
- Chapter 2 Developmental Mutant Screens in the ZebrafishPublished by Elsevier ,1998
- Reverse genetics by chemical mutagenesis in Caenorhabditis elegansNature Genetics, 1997
- Characterization and expression of the recombination activating genes (rag1 and rag2) of zebrafishImmunogenetics, 1997
- The V(D)J recombination activating gene, RAG-1Cell, 1989
- Altering the Genome by Homologous RecombinationScience, 1989
- Germ line transmission and expression of a corrected HPRT gene produced by gene targeting in embryonic stem cellsCell, 1989