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Methods in Molecular Biology (Clifton, N.J.)
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November 5, 2011
Dissecting the linkage between transcription factor self-assembly and site-specific DNA binding: the role of the analytical ultracentrifuge
Amie D Moody, James P Robblee, David L Bain
Journal of Cellular Biochemistry
|
April 4, 2008
Oxidation and nuclear localization of thioredoxin-1 in sparse cell cultures
Jeanine C Spielberger, Amie D Moody, Walter H Watson
Nature Protocols
|
May 3, 2008
Quantitative DNase footprint titration: a tool for analyzing the energetics of protein-DNA interactions
Keith D Connaghan-Jones, Amie D Moody, David L Bain
Biochemistry
|
December 29, 2011
Thermodynamic dissection of estrogen receptor-promoter interactions reveals that steroid receptors differentially partition their self-association and promoter binding energetics
Amie D Moody, Michael T Miura, Keith D Connaghan, et al.
Proteins
|
March 21, 2014
Homologous steroid receptors assemble at identical promoter architectures with unique energetics of cooperativity
Keith D Connaghan, Qin Yang, Michael T Miura, et al.
Biophysical Chemistry
|
June 24, 2011
From steroid receptors to cytokines: the thermodynamics of self-associating systems
Keith D Connaghan, Amie D Moody, James P Robblee, et al.
Page
of 1
Search research articles
Search
Showing results (1-10 of 6) with videos related to
Sort By:
Page
of 1
Methods in Molecular Biology (Clifton, N.J.)
|
November 5, 2011
Dissecting the linkage between transcription factor self-assembly and site-specific DNA binding: the role of the analytical ultracentrifuge
Amie D Moody, James P Robblee, David L Bain
Journal of Cellular Biochemistry
|
April 4, 2008
Oxidation and nuclear localization of thioredoxin-1 in sparse cell cultures
Jeanine C Spielberger, Amie D Moody, Walter H Watson
Nature Protocols
|
May 3, 2008
Quantitative DNase footprint titration: a tool for analyzing the energetics of protein-DNA interactions
Keith D Connaghan-Jones, Amie D Moody, David L Bain
Biochemistry
|
December 29, 2011
Thermodynamic dissection of estrogen receptor-promoter interactions reveals that steroid receptors differentially partition their self-association and promoter binding energetics
Amie D Moody, Michael T Miura, Keith D Connaghan, et al.
Proteins
|
March 21, 2014
Homologous steroid receptors assemble at identical promoter architectures with unique energetics of cooperativity
Keith D Connaghan, Qin Yang, Michael T Miura, et al.
Biophysical Chemistry
|
June 24, 2011
From steroid receptors to cytokines: the thermodynamics of self-associating systems
Keith D Connaghan, Amie D Moody, James P Robblee, et al.
Page
of 1