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The Journal of Biological Chemistry|February 24, 1995
Role of partner homology in DNA recombination. Complementary base pairing orients the 5'-hydroxyl for strand joining during Flp site-specific recombinationJ Lee, M JayaramGenes & Development|October 6, 1997
A tetramer of the Flp recombinase silences the trimers within it during resolution of a Holliday junction substrateJ Lee, M JayaramThe Journal of Biological Chemistry|August 11, 1995
Junction mobility and resolution of Holliday structures by Flp site-specific recombinase. Testing partner compatibility during recombinationJ Lee, J Lee, M JayaramThe Journal of Biological Chemistry|September 29, 1995
Functional roles of individual recombinase monomers in strand breakage and strand union during site-specific DNA recombinationJ Lee, M JayaramThe Journal of Biological Chemistry|August 15, 1993
Mechanism of site-specific recombination. Logic of assembling recombinase catalytic site from fractional active sitesJ Lee, M JayaramThe EMBO Journal|November 15, 1994
Directed protein replacement in recombination full sites reveals trans-horizontal DNA cleavage by Flp recombinaseJ Lee, I Whang, J Lee, et al.Genes & Development|December 31, 1997
Mechanism of active site exclusion in a site-specific recombinase: role of the DNA substrate in conferring half-of-the-sites activityJ Lee, T Tonozuka, M JayaramJournal of Molecular Biology|February 12, 2000
Resolution of tethered antiparallel and parallel holliday junctions by the Flp site-specific recombinaseJ Lee, G Tribble, M JayaramThe EMBO Journal|February 2, 1999
Wild-type Flp recombinase cleaves DNA in transJ Lee, M Jayaram, I GraingeMolecular and Cellular Biology|November 1, 1994
Active-site assembly and mode of DNA cleavage by Flp recombinase during full-site recombinationI Whang, J Lee, M JayaramPageof 1,953