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Nature Structural Biology|October 1, 1994
Parallel evolution in two homologues of phosphorylaseV L Rath, R J FletterickJournal of Molecular Biology|June 20, 1992
Purification and crystallization of glycogen phosphorylase from Saccharomyces cerevisiaeV L Rath, P K Hwang, R J FletterickAnnual Review of Biophysics and Biomolecular Structure|May 8, 2001
Structural relationships among regulated and unregulated phosphorylasesJ L Buchbinder, V L Rath, R J FletterickStructure (London, England : 1993)|April 15, 1996
The evolution of an allosteric site in phosphorylaseV L Rath, K Lin, P K Hwang, et al.Science (New York, N.Y.)|September 13, 1996
A protein phosphorylation switch at the conserved allosteric site in GPK Lin, V L Rath, S C Dai, et al.Proteins|January 1, 1987
Modeling the biochemical differences between rabbit muscle and human liver phosphorylaseV L Rath, C B Newgard, S R Sprang, et al.Biophysical Journal|October 1, 1980
Subunit interactions and the allosteric response in phosphorylaseS Sprang, R J FletterickThe Journal of Biological Chemistry|September 13, 1996
Role of the active site gate of glycogen phosphorylase in allosteric inhibition and substrate bindingJ L Buchbinder, R J FletterickCurrent Opinion in Structural Biology|December 26, 2001
Nucleotide switches in molecular motors: structural analysis of kinesins and myosinsE P Sablin, R J FletterickNature|November 6, 1986
Convergent and divergent evolution of regulatory sites in eukaryotic phosphorylasesP K Hwang, R J FletterickPageof 14