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Current Protocols in Nucleic Acid Chemistry
|
April 23, 2008
Time-resolved hydroxyl radical footprinting of RNA with X-rays
S A Woodson, M L Deras, M Brenowitz
Journal of Molecular Biology
|
February 5, 2000
Fast folding of a ribozyme by stabilizing core interactions: evidence for multiple folding pathways in RNA
J Pan, M L Deras, S A Woodson
Biochemistry
|
January 16, 1999
N2-hydroxyguanosine 5'-monophosphate is a time-dependent inhibitor of Escherichia coli guanosine monophosphate synthetase
M L Deras, S V Chittur, V J Davisson
Biochemistry
|
October 4, 2000
Multiple folding pathways for the P4-P6 RNA domain
S K Silverman, M L Deras, S A Woodson, et al.
Biochemistry
|
September 22, 2000
Folding mechanism of the Tetrahymena ribozyme P4-P6 domain
M L Deras, M Brenowitz, C Y Ralston, et al.
Nature Structural Biology
|
January 1, 1996
The crystal structure of GMP synthetase reveals a novel catalytic triad and is a structural paradigm for two enzyme families
J J Tesmer, T J Klem, M L Deras, et al.
Page
of 1
Search research articles
Search
Showing results (1-10 of 6) with videos related to
Sort By:
Page
of 1
Current Protocols in Nucleic Acid Chemistry
|
April 23, 2008
Time-resolved hydroxyl radical footprinting of RNA with X-rays
S A Woodson, M L Deras, M Brenowitz
Journal of Molecular Biology
|
February 5, 2000
Fast folding of a ribozyme by stabilizing core interactions: evidence for multiple folding pathways in RNA
J Pan, M L Deras, S A Woodson
Biochemistry
|
January 16, 1999
N2-hydroxyguanosine 5'-monophosphate is a time-dependent inhibitor of Escherichia coli guanosine monophosphate synthetase
M L Deras, S V Chittur, V J Davisson
Biochemistry
|
October 4, 2000
Multiple folding pathways for the P4-P6 RNA domain
S K Silverman, M L Deras, S A Woodson, et al.
Biochemistry
|
September 22, 2000
Folding mechanism of the Tetrahymena ribozyme P4-P6 domain
M L Deras, M Brenowitz, C Y Ralston, et al.
Nature Structural Biology
|
January 1, 1996
The crystal structure of GMP synthetase reveals a novel catalytic triad and is a structural paradigm for two enzyme families
J J Tesmer, T J Klem, M L Deras, et al.
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of 1