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Biopolymers|March 22, 2016
Invited review: Activation of G proteins by GTP and the mechanism of Gα-catalyzed GTP hydrolysisStephen R SprangThe Journal of Biological Chemistry|October 8, 2003
Thermodynamic characterization of the binding of activator of G protein signaling 3 (AGS3) and peptides derived from AGS3 with G alpha i1Anirban Adhikari, Stephen R SprangBiochemistry|July 21, 2009
Transition state structures and the roles of catalytic residues in GAP-facilitated GTPase of Ras as elucidated by (18)O kinetic isotope effectsXinlin Du, Stephen R SprangAdvances in Protein Chemistry|September 15, 2007
Structural basis of effector regulation and signal termination in heterotrimeric Galpha proteinsStephen R Sprang, Zhe Chen, Xinlin DuProceedings of the National Academy of Sciences of the United States of America|August 15, 2002
Cosolvent-induced transformation of a death domain tertiary structureTsan Xiao, Kevin H Gardner, Stephen R SprangAnalytical Biochemistry|October 30, 2007
A method to determine 18 O kinetic isotope effects in the hydrolysis of nucleotide triphosphatesXinlin Du, Kurt Ferguson, Robert Gregory, et al.The Journal of Biological Chemistry|June 25, 2002
Distinct interactions of GTP, UTP, and CTP with G(s) proteinsAndreas Gille, Hui-Yu Liu, Stephen R Sprang, et al.Protein Science : a Publication of the Protein Society|November 11, 2010
Modulation of a GEF switch: autoinhibition of the intrinsic guanine nucleotide exchange activity of p115-RhoGEFZhe Chen, Liang Guo, Stephen R Sprang, et al.Nature Structural & Molecular Biology|January 25, 2005
Structure of the p115RhoGEF rgRGS domain-Galpha13/i1 chimera complex suggests convergent evolution of a GTPase activatorZhe Chen, William D Singer, Paul C Sternweis, et al.Pageof 5