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Protein Science : a Publication of the Protein Society|July 1, 1997
Conformational substates in enzyme mechanism: the 120 K structure of alpha-lytic protease at 1.5 A resolutionS D Rader, D A AgardNature Structural Biology|May 10, 2000
Two energetically disparate folding pathways of alpha-lytic protease share a single transition stateA I Derman, D A AgardBiophysical Journal|March 1, 1982
Linking regions between helices in bacteriorhodopsin revealedD A Agard, R M StroudBiophysical Journal|December 1, 1984
Quantitative analysis of nucleic acids, proteins, and viruses by Raman band deconvolutionG J Thomas, D A AgardJournal of Molecular Biology|February 5, 1999
Enzyme specificity under dynamic control: a normal mode analysis of alpha-lytic proteaseD W Miller, D A AgardThe Journal of Biological Chemistry|November 10, 1981
Turnover of regulatory subunit of cyclic AMP-dependent protein kinase in S49 mouse lymphoma cells. Regulation by catalytic subunit and analogs of cyclic AMPR A Steinberg, D A AgardJournal of Molecular Biology|December 8, 1995
Kinetic and structural characterization of mutations of glycine 216 in alpha-lytic protease: a new target for engineering substrate specificityJ E Mace, D A AgardThe Journal of Cell Biology|December 1, 1990
Temporal and spatial coordination of chromosome movement, spindle formation, and nuclear envelope breakdown during prometaphase in Drosophila melanogaster embryosY Hiraoka, D A Agard, J W SedatJournal of Molecular Biology|July 20, 1991
Computational method for the design of enzymes with altered substrate specificityC Wilson, J E Mace, D A AgardPageof 187