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DNA Dynamics and Chromosome Structure

Effects of Controlled RAD52 Expression on Repair and Recombination in Saccharomyces cerevisiae

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Pages 2013-2017 | Received 29 Sep 1990, Accepted 07 Jan 1991, Published online: 31 Mar 2023

REFERENCES

  • Adzuma, K., T. Ogawa, and H. Ogawa. 1984. Primary structure of the RAD52 gene in Saccharomyces cerevisiae. Mol. Cell. Biol. 4:2735–2744.
  • Ahn, B.-Y., and D. M. Livingston. 1986. Mitotic gene conversion lengths, coconversion patterns, and the incidence of reciprocal recombination in a Saccharomyces cerevisiae plasmid system. Mol. Cell. Biol. 6:3685–3693.
  • Andreadis, A., Y.-P. Hsu, M. Hermodson, G. Kohlhaw, and P. Schimmel. 1984. Yeast LEU2. J. Biol. Chem. 259:8059–8062.
  • Beacham, I. R., B. W. Schweitzer, H. M. Warrick, and J. Carbon. 1984. The nucleotide sequence of the yeast ARG4 gene. Gene 29:271–279.
  • Borts, R. H., M. Lichten, and J. Haber. 1986. Analysis of meiosis-defective mutations in yeast by physical monitoring of recombination. Genetics 113:551–567.
  • Brill, S. J., and R. Sternglanz. 1988. Transcription-dependent DNA supercoiling in yeast DNA topoisomerase mutants. Cell 54:403–411.
  • Cole, G. M., D. Schild, and R. K. Mortimer. 1989. Two DNA repair and recombination genes in Saccharomyces cerevisiae, RAD52 and RAD54, are induced during meiosis. Mol. Cell. Biol. 9:3101–3104.
  • Dornfeld, K. Unpublished observation.
  • Esposito, M. S. 1978. Evidence that spontaneous mitotic recombination occurs at the two-strand stage. Proc. Natl. Acad. Sci. USA 75:4436–4440.
  • Esposito, R. E. 1968. Genetic recombination in synchronized cultures of Saccharomyces cerevisiae. Genetics 59:191–210.
  • Fabre, F. 1978. Induced intragenic recombination can occur during the G1 mitotic phase. Nature (London) 272:795–798.
  • Fabre, F., A. Boulet, and H. Roman. 1984. Gene conversion at different points in the mitotic cycle of Saccharomyces cerevisiae. Mol. Gen. Genet. 195:139–143.
  • Game, J. C., and R. K. Mortimer. 1974. A genetic study of X-ray sensitive mutants in yeast. Mutat. Res. 24:281–292.
  • Game, J. C., T. J. Zamb, R. J. Braun, M. Resnick, and R. M. Roth. 1980. The role of radiation (rad) genes in meiotic recombination in yeast. Genetics 94:51–68.
  • Golin, J. E., and M. S. Esposito. 1981. Mismatch correction and replicational resolution of Holliday structures formed at the two strand stage in Saccharomyces. Mol. Gen. Genet. 183:252–263.
  • Haber, J. E., and M. Hearn. 1985. RAD52-independent mitotic gene conversion in Saccharomyces cerevisiae frequently results in chromosome loss. Genetics 111:7–22.
  • Ho, K. S. Y. 1975. The gene dosage effect of the rad52 mutation on X-ray survival curves of tetraploid yeast strains. Mutat. Res. 33:165–172.
  • Innis, M. A., M. J. Holland, P. C. McCabe, G. E. Cole, V. P. Wittman, R. Tal, K. W. K. Watt, D. H. Gelfand, J. P. Holland, and J. H. Meade. 1985. Expression, glycosylation, and secretion of an Aspergillus glucoamylase by Saccharomyces. Science 228:21–26.
  • Jackson, J. A., and G. R. Fink. 1981. Gene conversion between duplicated genetic elements in yeast. Nature (London) 292:306–311.
  • Johnston, M., and R. W. Davis. 1984. Sequences that regulate the divergent GAL1-GAL10 promoter in Saccharomyces cerevisiae. Mol. Cell. Biol. 4:1440–1448.
  • Lea, D. E., and C. A. Coulson. 1949. The distribution of the numbers of mutants in bacterial populations. J. Genet. 49:264–285.
  • Luria, S. E., and M. Delbruck. 1943. Mutations of bacteria from virus sensitivity to virus resistance. Genetics 28:491–511.
  • Malone, R. E., and R. E. Esposito. 1980. The RAD52 gene is required for homothallic interconversion of mating types and spontaneous mitotic recombination in yeast. Proc. Natl. Acad. Sci. USA 77:9503–9507.
  • McAlister, L., and M. J. Holland. 1982. Targeted deletion of a yeast enolase structural gene. J. Biol. Chem. 257:7181–7188.
  • Prakash, L., and S. Prakash. 1977. Isolation and characterization of MMS-sensitive mutants of Saccharomyces cerevisiae. Genetics 86:33–55.
  • Prakash, S., L. Prakash, W. Burke, and B. Montelone. 1980. Effects of the RAD52 gene on recombination in Saccharomyces cerevisiae. Genetics 94:31–50.
  • Resnick, M. A. 1969. Genetic control of radiation sensitivity in Saccharomyces cerevisiae. Genetics 62:519–531.
  • Resnick, M. A., and P. Martin. 1976. The repair of doublestrand breaks in the nuclear DNA of Saccharomyces cerevisiae and its genetic control. Mol. Gen. Genet. 143:119–129.
  • Resnick, M. A., J. Nitiss, C. Edwards, and R. E. Malone. 1986. Meiosis can induce recombination in rad52 mutants of Saccharomyces cerevisiae. Genetics 113:531–550.
  • Roman, H., and F. Fabre. 1983. Gene conversion and associated reciprocal recombination are separable events in vegetative cells of Saccharomyces cerevisiae. Proc. Natl. Acad. Sci. USA 80:6912–6916.
  • Schild, D., B. Konforti, C. Perez, W. Gish, and R. Mortimer. 1983. Isolation and characterization of the yeast DNA repair genes. I. Cloning of the RAD52 gene. Curr. Genet. 7:85–92.
  • Strike, T. L. 1978. Characterization of mutants of yeast sensitive to X-rays. Ph.D. thesis. University of California, Davis, Davis.
  • Throm, E., and W. Duntze. 1970. Mating-type-dependent inhibition of deoxyribonucleic acid synthesis in Saccharomyces cerevisiae. J. Bacteriol. 104:1388–1390.
  • White, C. L, and J. E. Haber. 1990. Intermediates of recombination during mating type switching in Saccharomyces cerevisiae. EMBO J. 9:663–673.
  • Wildenberg, J. 1970. The relation of mitotic recombination to DNA replication in yeast pedigrees. Genetics 66:291–304.
  • Zakian, V. A., B. J. Brewer, and W. L. Fangman. 1979. Replication of each copy of the yeast 2 micron DNA plasmid occurs during the S phase. Cell 17:923–934.

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