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Cell|September 20, 1991
Temporal comparison of recombination and synaptonemal complex formation during meiosis in S. cerevisiaeR Padmore, L Cao, N KlecknerCell|June 15, 1990
A pathway for generation and processing of double-strand breaks during meiotic recombination in S. cerevisiaeL Cao, E Alani, N KlecknerGenetics|August 1, 1991
Genetic evidence against intramolecular rejoining of the donor DNA molecule following IS10 transpositionJ Bender, J Kuo, N KlecknerGenetics|February 1, 1976
Terminal redundancy heterozygotes involving the first-step-transfer region of the bacteriophage T5 chromosomeD Fischhoff, D MacNeil, N KlecknerCell|May 4, 1990
Analysis of wild-type and rad50 mutants of yeast suggests an intimate relationship between meiotic chromosome synapsis and recombinationE Alani, R Padmore, N KlecknerGenetics|May 1, 1989
The yeast RAD50 gene encodes a predicted 153-kD protein containing a purine nucleotide-binding domain and two large heptad-repeat regionsE Alani, S Subbiah, N KlecknerGenetics|August 1, 1987
A method for gene disruption that allows repeated use of URA3 selection in the construction of multiply disrupted yeast strainsE Alani, L Cao, N KlecknerProceedings of the National Academy of Sciences of the United States of America|November 26, 1999
Functional specificity of MutL homologs in yeast: evidence for three Mlh1-based heterocomplexes with distinct roles during meiosis in recombination and mismatch correctionT F Wang, N Kleckner, N HunterGenes & Development|January 1, 1997
Meiotic cells monitor the status of the interhomolog recombination complexL Xu, B M Weiner, N KlecknerProceedings of the National Academy of Sciences of the United States of America|November 1, 1987
Efficient Tn10 transposition into a DNA insertion hot spot in vivo requires the 5-methyl groups of symmetrically disposed thymines within the hot-spot consensus sequenceS Y Lee, D Butler, N KlecknerPageof 14