Site-specific recombination determined by I-SceI, a mitochondrial group I intron-encoded endonuclease expressed in the yeast nucleus.
- 1 March 1992
- journal article
- Vol. 130 (3) , 451-60
Abstract
The Saccharomyces cerevisiae mitochondrial endonuclease I-SceI creates a double-strand break as the initiating step in the gene conversional transfer of the omega+ intron to omega- DNA. We have expressed a galactose-inducible synthetic I-SceI gene in the nucleus of yeast that also carries the I-SceI recognition site on a plasmid substrate. We find that the galactose-induced I-SceI protein can be active in the nucleus and efficiently catalyze recombination. With a target plasmid containing direct repeats of the Escherichia coli lacZ gene, one copy of which is interrupted by a 24-bp cutting site, galactose induction produces both deletions and gene conversions. Both the kinetics and the proportion of deletions and gene conversions are very similar to analogous events initiated by a galactose-inducible HO endonuclease gene. We also find that, in a rad52 mutant strain, the repair of double-strand breaks initiated by I-SceI and by HO are similarly affected: the formation of deletions is reduced, but not eliminated. Altogether, these results suggest either that the two endonucleases act in the same way after double-strand break formation or that the two endonucleases are not involved in subsequent steps.This publication has 39 references indexed in Scilit:
- Analysis of wild-type and rad50 mutants of yeast suggests an intimate relationship between meiotic chromosome synapsis and recombinationPublished by Elsevier ,1990
- A rapid and efficient procedure for transformation of intact Saccharomyces cerevisiae by electroporationBiochemical and Biophysical Research Communications, 1989
- Double-strand breaks at an initiation site for meiotic gene conversionNature, 1989
- A latent intron-encoded maturase is also an endonuclease needed for intron mobilityCell, 1989
- Site-specific DNA endonuclease and RNA maturase activities of two homologous intron-encoded proteins from yeast mitochondriaCell, 1989
- Intra-chromosomal gene conversion induced by a DNA double-strand break in Saccharomyces cerevisiaeJournal of Molecular Biology, 1988
- Universal code equivalent of a yeast mitochondrial intron reading frame is expressed into E. coli as a specific double strand endonucleaseCell, 1986
- An intron-encoded protein is active in a gene conversion process that spreads an intron into a mitochondrial geneCell, 1985
- Transposition of an intron in yeast mitochondria requires a protein encoded by that intronCell, 1985
- Homothallic switching of yeast mating type cassettes is initiated by a double-stranded cut in the MAT locusCell, 1982