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Journal of the American Chemical Society|August 2, 2008
Origins of enhanced proton transport in the Y7F mutant of human carbonic anhydrase IIC Mark Maupin, Marissa G Saunders, Ian F Thorpe, et al.Archives of Biochemistry and Biophysics|October 18, 2011
Structure and catalysis by carbonic anhydrase II: role of active-site tryptophan 5Rose Mikulski, John F Domsic, George Ling, et al.Acta Crystallographica. Section F, Structural Biology and Crystallization Communications|July 6, 2006
X-ray crystallographic studies reveal that the incorporation of spacer groups in carbonic anhydrase inhibitors causes alternate binding modesS Zoë Fisher, Lakshmanan Govindasamy, Nicholas Boyle, et al.Archives of Biochemistry and Biophysics|November 1, 2012
Role of Trp19 and Tyr200 in catalysis by the γ-class carbonic anhydrase from Methanosarcina thermophilaSabrina Zimmerman, John F Domsic, Chingkuang Tu, et al.Biochemistry|June 29, 2010
Structural and kinetic study of the extended active site for proton transfer in human carbonic anhydrase IIJohn F Domsic, Wilton Williams, Suzanne Z Fisher, et al.Acta Crystallographica. Section F, Structural Biology and Crystallization Communications|March 3, 2006
Structure of human salivary alpha-amylase crystallized in a C-centered monoclinic space groupS Zoë Fisher, Lakshmanan Govindasamy, Chingkuang Tu, et al.Biochemistry|October 27, 2012
Structural and kinetic effects on changes in the CO(2) binding pocket of human carbonic anhydrase IIDayne West, Chae Un Kim, Chingkuang Tu, et al.Biochemistry|February 28, 2002
Chemical rescue in catalysis by human carbonic anhydrases II and IIIHaiqian An, Chingkuang Tu, David Duda, et al.Biochemistry|March 7, 2009
Contribution of human manganese superoxide dismutase tyrosine 34 to structure and catalysisJ Jefferson P Perry, Amy S Hearn, Diane E Cabelli, et al.Biochemistry|December 11, 2012
Water networks in fast proton transfer during catalysis by human carbonic anhydrase IIRose Mikulski, Dayne West, Katherine H Sippel, et al.Pageof 9