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T M Lohman

Showing results (51-60 of 87) with videos related to

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The Journal of Biological Chemistry|April 5, 1988
Binding mode transitions of Escherichia coli single strand binding protein-single-stranded DNA complexes. Cation, anion, pH, and binding density effectsW Bujalowski, L B Overman, T M Lohman
Biopolymers|September 1, 1989
On the cooperative binding of large ligands to a one-dimensional homogeneous lattice: the generalized three-state lattice modelW Bujalowski, T M Lohman, C F Anderson
Trends in Biochemical Sciences|July 1, 1988
E. coli single strand binding protein: a new look at helix-destabilizing proteinsT M Lohman, W Bujalowski, L B Overman
Journal of Molecular Biology|November 1, 1996
ATP hydrolysis stimulates binding and release of single stranded DNA from alternating subunits of the dimeric E. coli Rep helicase: implications for ATP-driven helicase translocationK P Bjornson, I Wong, T M Lohman
Biochemistry|January 19, 1993
Overexpression, purification, DNA binding, and dimerization of the Escherichia coli uvrD gene product (helicase II)G T Runyon, I Wong, T M Lohman
Biochemistry|July 7, 1992
Cooperative binding of polyamines induces the Escherichia coli single-strand binding protein-DNA binding mode transitionsT F Wei, W Bujalowski, T M Lohman
Biochemistry|July 25, 1989
Iron(II)-ethylenediaminetetraacetic acid catalyzed cleavage of DNA is highly specific for duplex DNAM J Jezewska, W Bujalowski, T M Lohman
Biophysical Chemistry|February 28, 1997
A mutation in E. coli SSB protein (W54S) alters intra-tetramer negative cooperativity and inter-tetramer positive cooperativity for single-stranded DNA bindingM E Ferrari, J Fang, T M Lohman
Journal of Molecular Biology|February 11, 1994
Co-operative binding of Escherichia coli SSB tetramers to single-stranded DNA in the (SSB)35 binding modeM E Ferrari, W Bujalowski, T M Lohman
Biochemistry|January 12, 1988
Equilibrium binding of Escherichia coli single-strand binding protein to single-stranded nucleic acids in the (SSB)65 binding mode. Cation and anion effects and polynucleotide specificityL B Overman, W Bujalowski, T M Lohman
Pageof 9

Showing results (51-60 of 87) with videos related to

Sort By:
Pageof 9
The Journal of Biological Chemistry|April 5, 1988
Binding mode transitions of Escherichia coli single strand binding protein-single-stranded DNA complexes. Cation, anion, pH, and binding density effectsW Bujalowski, L B Overman, T M Lohman
Biopolymers|September 1, 1989
On the cooperative binding of large ligands to a one-dimensional homogeneous lattice: the generalized three-state lattice modelW Bujalowski, T M Lohman, C F Anderson
Trends in Biochemical Sciences|July 1, 1988
E. coli single strand binding protein: a new look at helix-destabilizing proteinsT M Lohman, W Bujalowski, L B Overman
Journal of Molecular Biology|November 1, 1996
ATP hydrolysis stimulates binding and release of single stranded DNA from alternating subunits of the dimeric E. coli Rep helicase: implications for ATP-driven helicase translocationK P Bjornson, I Wong, T M Lohman
Biochemistry|January 19, 1993
Overexpression, purification, DNA binding, and dimerization of the Escherichia coli uvrD gene product (helicase II)G T Runyon, I Wong, T M Lohman
Biochemistry|July 7, 1992
Cooperative binding of polyamines induces the Escherichia coli single-strand binding protein-DNA binding mode transitionsT F Wei, W Bujalowski, T M Lohman
Biochemistry|July 25, 1989
Iron(II)-ethylenediaminetetraacetic acid catalyzed cleavage of DNA is highly specific for duplex DNAM J Jezewska, W Bujalowski, T M Lohman
Biophysical Chemistry|February 28, 1997
A mutation in E. coli SSB protein (W54S) alters intra-tetramer negative cooperativity and inter-tetramer positive cooperativity for single-stranded DNA bindingM E Ferrari, J Fang, T M Lohman
Journal of Molecular Biology|February 11, 1994
Co-operative binding of Escherichia coli SSB tetramers to single-stranded DNA in the (SSB)35 binding modeM E Ferrari, W Bujalowski, T M Lohman
Biochemistry|January 12, 1988
Equilibrium binding of Escherichia coli single-strand binding protein to single-stranded nucleic acids in the (SSB)65 binding mode. Cation and anion effects and polynucleotide specificityL B Overman, W Bujalowski, T M Lohman
Pageof 9