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Structure (London, England : 1993)|April 5, 2022
Computational studies of the principle of dynamic-change-driven protein interactionsZhen-Lu Li, Carla Mattos, Matthias BuckBioscience Reports|January 15, 2021
Remodeling hydrogen bond interactions results in relaxed specificity of Caspase-3Liqi Yao, Paul Swartz, Paul T Hamilton, et al.Biochemistry|October 25, 2014
Modifying caspase-3 activity by altering allosteric networksChristine Cade, Paul Swartz, Sarah H MacKenzie, et al.The Journal of Biological Chemistry|February 8, 2018
Modifications to a common phosphorylation network provide individualized control in caspasesMelvin E Thomas, Robert Grinshpon, Paul Swartz, et al.Proceedings of the National Academy of Sciences of the United States of America|March 3, 2010
Allosteric modulation of Ras positions Q61 for a direct role in catalysisGreg Buhrman, Genevieve Holzapfel, Susan Fetics, et al.The Journal of Biological Chemistry|February 7, 2026
An evolutionarily conserved salt bridge stabilizes the active site for GTP hydrolysis in Rho GTPasesKendra Marcus, Michael Schwabe, Ryan Knihtila, et al.Cancer Research|May 17, 2012
A comprehensive survey of Ras mutations in cancerIan A Prior, Paul D Lewis, Carla MattosProtein Science : a Publication of the Protein Society|September 20, 2018
Predicting X-ray solution scattering from flexible macromoleculesHao Zhou, Hugo Guterres, Carla Mattos, et al.Biophysical Chemistry|June 8, 2011
A bifunctional allosteric site in the dimer interface of procaspase-3Joshua L Schipper, Sarah H MacKenzie, Anil Sharma, et al.Protein Expression and Purification|November 18, 2005
Novel protein purification system utilizing an N-terminal fusion protein and a caspase-3 cleavable linkerBrett Feeney, Erik J Soderblom, Michael B Goshe, et al.Pageof 10