John D. Cox, Ph.D.
Affiliations: | 2000 | University of Pennsylvania, Philadelphia, PA, United States |
Area:
structure-mechanism of hydrolytic metalloenzymesGoogle:
"John Cox"Mean distance: 8.61 | S | N | B | C | P |
Parents
Sign in to add mentorDavid W. Christianson | grad student | 2000 | Penn | |
(Arginase: Structure-based mechanism and role in erectile function.) |
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Publications
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Colleluori DM, Reczkowski RS, Emig FA, et al. (2005) Probing the role of the hyper-reactive histidine residue of arginase. Archives of Biochemistry and Biophysics. 444: 15-26 |
Lavulo LT, Sossong TM, Brigham-Burke MR, et al. (2001) Subunit-subunit interactions in trimeric arginase. Generation of active monomers by mutation of a single amino acid. The Journal of Biological Chemistry. 276: 14242-8 |
Cox JD, Cama E, Colleluori DM, et al. (2001) Mechanistic and metabolic inferences from the binding of substrate analogues and products to arginase. Biochemistry. 40: 2689-701 |
Kim NN, Cox JD, Baggio RF, et al. (2001) Probing erectile function: S-(2-boronoethyl)-L-cysteine binds to arginase as a transition state analogue and enhances smooth muscle relaxation in human penile corpus cavernosum. Biochemistry. 40: 2678-88 |
Cox JD, Hunt JA, Compher KM, et al. (2000) Structural influence of hydrophobic core residues on metal binding and specificity in carbonic anhydrase II. Biochemistry. 39: 13687-94 |
Ash DE, Cox JD, Christianson DW. (2000) Arginase: a binuclear manganese metalloenzyme. Metal Ions in Biological Systems. 37: 407-28 |
Christianson DW, Cox JD. (1999) Catalysis by metal-activated hydroxide in zinc and manganese metalloenzymes. Annual Review of Biochemistry. 68: 33-57 |
Baggio R, Cox JD, Harper SL, et al. (1999) A new chromophoric assay for arginase activity. Analytical Biochemistry. 276: 251-3 |
Cox JD, Kim NN, Traish AM, et al. (1999) Arginase-boronic acid complex highlights a physiological role in erectile function. Nature Structural Biology. 6: 1043-7 |