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Molecular and Cellular Biology|June 22, 1999
Removal of frameshift intermediates by mismatch repair proteins in Saccharomyces cerevisiaeB D Harfe, S Jinks-RobertsonMolecular and Cellular Biology|May 1, 1997
Frameshift intermediates in homopolymer runs are removed efficiently by yeast mismatch repair proteinsC N Greene, S Jinks-RobertsonGenetics|September 1, 1992
An examination of adaptive reversion in Saccharomyces cerevisiaeD F Steele, S Jinks-RobertsonMutation Research|August 1, 2000
Mismatch repair proteins and mitotic genome stabilityB D Harfe, S Jinks-RobertsonMolecular Cell|February 13, 2001
DNA polymerase zeta introduces multiple mutations when bypassing spontaneous DNA damage in Saccharomyces cerevisiaeB D Harfe, S Jinks-RobertsonCurrent Genetics|May 1, 1993
Time-dependent mitotic recombination in Saccharomyces cerevisiaeD F Steele, S Jinks-RobertsonProceedings of the National Academy of Sciences of the United States of America|May 1, 1985
High-frequency meiotic gene conversion between repeated genes on nonhomologous chromosomes in yeastS Jinks-Robertson, T D PetesGenetics|November 1, 1986
Chromosomal translocations generated by high-frequency meiotic recombination between repeated yeast genesS Jinks-Robertson, T D PetesProceedings of the National Academy of Sciences of the United States of America|January 15, 1993
A yeast expression system for human galactose-1-phosphate uridylyltransferaseJ L Fridovich-Keil, S Jinks-RobertsonGenetics|May 1, 1997
Meiotic crossing over between nonhomologous chromosomes affects chromosome segregation in yeastS Jinks-Robertson, S Sayeed, T MurphyPageof 4