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Journal of Molecular Biology|April 5, 1996
Assembly and orientation of Flp recombinase active sites on two-, three- and four-armed DNA substrates: implications for a recombination mechanismJ Lee, I Whang, M JayaramCell|May 15, 1992
DNA cleavage in trans by the active site tyrosine during Flp recombination: switching protein partners before exchanging strandsJ W Chen, J Lee, M JayaramJournal of Molecular Biology|March 8, 1996
Analyses of the first chemical step in Flp site-specific recombination: Synapsis may not be a pre-requisite for strand cleavageY Voziyanov, J Lee, I Whang, et al.Molecular Cell|July 14, 1998
Structural alterations and conformational dynamics in Holliday junctions induced by binding of a site-specific recombinaseJ Lee, Y Voziyanov, S Pathania, et al.Journal of Molecular Biology|December 6, 2001
DNA recombination and RNA cleavage activities of the Flp protein: roles of two histidine residues in the orientation and activation of the nucleophile for strand cleavageI Grainge, J Lee, C J Xu, et al.Biochemistry|May 11, 1993
Sequence-specific cleavage of DNA via nucleophilic attack of hydrogen peroxide, assisted by Flp recombinaseA S Kimball, J Lee, M Jayaram, et al.Cellular & Molecular Biology Research|January 1, 1994
Role of tyrosine phosphorylation-dephosphorylation in copy number control of the yeast plasmid 2 micron circleP Saxena, I Whang, J Lee, et al.The Journal of Biological Chemistry|August 15, 1998
Alcoholysis and strand joining by the Flp site-specific recombinase. Mechanistically equivalent reactions mediated by distinct catalytic configurationsB R Knudsen, J Lee, M Lisby, et al.The Journal of Biological Chemistry|April 5, 2000
DNA recognition, strand selectivity, and cleavage mode during integrase family site-specific recombinationG Tribble, Y T Ahn, J Lee, et al.Proceedings of the National Academy of Sciences of the United States of America|September 1, 1985
Two-micrometer circle site-specific recombination: the minimal substrate and the possible role of flanking sequencesM JayaramPageof 1,953