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Eukaryotic Cell|December 14, 2004
Increased genome instability and telomere length in the elg1-deficient Saccharomyces cerevisiae mutant are regulated by S-phase checkpointsSoma Banerjee, Kyungjae MyungJournal of the National Cancer Institute. Monographs|July 24, 2008
The RAD5-dependent postreplication repair pathway is important to suppress gross chromosomal rearrangementsKyungjae Myung, Stephanie SmithMethods (San Diego, Calif.)|December 27, 2006
Measuring the rate of gross chromosomal rearrangements in Saccharomyces cerevisiae: A practical approach to study genomic rearrangements observed in cancerAkira Motegi, Kyungjae MyungDNA Repair|May 31, 2024
Exploring factors influencing choice of DNA double-strand break repair pathwaysDaniyar Otarbayev, Kyungjae MyungGenome Integrity|October 16, 2012
Fanconi-like crosslink repair in yeastDanielle L Daee, Kyungjae MyungCellular and Molecular Life Sciences : CMLS|June 24, 2009
Faithful after break-up: suppression of chromosomal translocationsSang Eun Lee, Kyungjae MyungMutation Research. Genetic Toxicology and Environmental Mutagenesis|January 31, 2022
Crosstalk between different DNA repair pathways for DNA double strand break repairsJung-Min Oh, Kyungjae MyungDNA Repair|January 28, 2003
Induction of genome instability by DNA damage in Saccharomyces cerevisiaeKyungjae Myung, Richard D KolodnerOncotarget|June 2, 2012
Cell-based high-throughput screens for the discovery of chemotherapeutic agentsJennifer T Fox, Kyungjae MyungProceedings of the National Academy of Sciences of the United States of America|March 28, 2002
Suppression of genome instability by redundant S-phase checkpoint pathways in Saccharomyces cerevisiaeKyungjae Myung, Richard D KolodnerPageof 16