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Biochemistry|July 13, 1993
Escherichia coli rep helicase unwinds DNA by an active mechanismM Amaratunga, T M LohmanBiochemistry|May 24, 1994
Effects of base composition on the negative cooperativity and binding mode transitions of Escherichia coli SSB-single-stranded DNA complexesT M Lohman, W BujalowskiBiochemistry|April 5, 1988
Negative cooperativity within individual tetramers of Escherichia coli single strand binding protein is responsible for the transition between the (SSB)35 and (SSB)56 DNA binding modesT M Lohman, W BujalowskiJournal of Molecular Biology|May 5, 1989
Negative co-operativity in Escherichia coli single strand binding protein-oligonucleotide interactions. I. Evidence and a quantitative modelW Bujalowski, T M LohmanJournal of Molecular Biology|June 20, 1987
Limited co-operativity in protein-nucleic acid interactions. A thermodynamic model for the interactions of Escherichia coli single strand binding protein with single-stranded nucleic acids in the "beaded", (SSB)65 modeW Bujalowski, T M LohmanProceedings of the National Academy of Sciences of the United States of America|June 15, 1993
A double-filter method for nitrocellulose-filter binding: application to protein-nucleic acid interactionsI Wong, T M LohmanBiochemistry|March 18, 1997
A two-site mechanism for ATP hydrolysis by the asymmetric Rep dimer P2S as revealed by site-specific inhibition with ADP-A1F4I Wong, T M LohmanProceedings of the National Academy of Sciences of the United States of America|September 17, 1996
ATPase activity of Escherichia coli Rep helicase crosslinked to single-stranded DNA: implications for ATP driven helicase translocationI Wong, T M LohmanThe Journal of Biological Chemistry|January 25, 1991
Monomer-tetramer equilibrium of the Escherichia coli ssb-1 mutant single strand binding proteinW Bujalowski, T M LohmanPageof 9