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The Journal of Biological Chemistry|April 5, 1991
RecA protein-facilitated DNA strand breaks. A mechanism for bypassing DNA structural barriers during strand exchangeW A Bedale, R B Inman, M M CoxThe Journal of Biological Chemistry|August 12, 1994
On the role of ATP hydrolysis in RecA protein-mediated DNA strand exchange. III. Unidirectional branch migration and extensive hybrid DNA formationS K Jain, M M Cox, R B InmanJournal of Molecular Biology|February 5, 1989
Extent of duplex DNA underwinding induced by RecA protein binding in the presence of ATPB F Pugh, B C Schutte, M M CoxProceedings of the National Academy of Sciences of the United States of America|November 1, 1985
The FLP recombinase of the yeast 2-micron plasmid: characterization of its recombination siteJ F Senecoff, R C Bruckner, M M CoxCell|November 18, 1997
Recombinational DNA repair: the RecF and RecR proteins limit the extension of RecA filaments beyond single-strand DNA gapsB L Webb, M M Cox, R B InmanJournal of Bacteriology|October 27, 1997
Convenient and reversible site-specific targeting of exogenous DNA into a bacterial chromosome by use of the FLP recombinase: the FLIRT systemL C Huang, E A Wood, M M CoxThe Journal of Biological Chemistry|August 18, 1995
Blocked RecA protein-mediated DNA strand exchange reactions are reversed by the RuvA and RuvB proteinsL E Iype, R B Inman, M M CoxThe Journal of Biological Chemistry|July 15, 1993
A reverse DNA strand exchange mediated by recA protein and exonuclease I. The generation of apparent DNA strand breaks by recA protein is explainedW A Bedale, R B Inman, M M CoxCold Spring Harbor Symposia on Quantitative Biology|January 1, 1984
Unidirectional branch migration promoted by nucleoprotein filaments of RecA protein and DNAM M Cox, S W Morrical, S K NeuendorfJournal of Molecular Biology|May 20, 1988
DNA recognition by the FLP recombinase of the yeast 2 mu plasmid. A mutational analysis of the FLP binding siteJ F Senecoff, P J Rossmeissl, M M CoxPageof 11