Department of Chemistry and Biochemistry
- About the Graduate Degrees
- Graduate Programs
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- Regular Faculty A-Z
- Adjunct Faculty A-Z
- Emeriti Faculty A-Z
- Retired Faculty A-Z
- Daniel W. Armstrong
- William A. Baker
- Edward Bellion
- Alejandro Bugarin
- Saiful Chowdhury
- Purnendu (Sandy) K. Dasgupta
- Rasika Dias
- Ronald L. Elsenbaumer
- Frank W. Foss
- Robert F. Francis
- Jongyun Heo
- Junha Jeon
- Kayunta Johnson-Winters
- Peter Kroll
- Carl J. Lovely
- Frederick MacDonnell
- Subhrangsu S. Mandal
- Dennis S. Marynick
- Brad S. Pierce
- Martin Pomerantz
- Laszlo Prokai
- Krishnan Rajeshwar
- Jimmy R. Rogers
- Zoltan A. Schelly
- Kevin A. Schug
- E. Thomas Strom
- Norma Tacconi
- Seiichiro Tanizaki
- Richard B. Timmons
- Jennifer Rhinehart
- Robin Macaluso
- Research Interests Grid
- Analytical Chemistry
- Environmental Chemistry
- Inorganic Chemistry
- Medicinal Chemistry
- Organic Chemistry
- Organometallic Chemistry
- Physical Chemistry
- How to Succeed in Chemistry
- Mass and Volume Measurement
- Separation of a Three Component Mixture
- Determining the Empirical Formula of a Copper Oxide
- Titration as an Analytical Method: Determining the Acid Content in Vinegar
- Qualitative Analysis: Identifying Simple Salts from their Properties and Reactions
- The Ideal Gas Law and Gas Constant
- Hess's Law and Calorimetry
- Synthesis of Tris-1,10-phen iron(II) chloride
- Spectrophotometric Determination of Purity and Concentration
- Atomic Emission Spectra of Gases: Evidence of Quantum Structure
- Chemiluminescence: Optimization of a Chemical Reaction
- Molecular Shapes By Valence Shell Electron Pair Repulsion (VSEPR) Theory
- Freezing Point Depression in tert-Butyl Alcohol
- Re-crystallization of Acetaminophen from Tylenol
- Chemical Kinetics: Determining the Rate Law for a Chemical Reaction
- Synthesis of 'Green Crystals'
- Colorimetric Determination of the Equilibrium constant for the Formation of a Complex Ion
- Buffer Solution Behavior
- Behavior of Strong and Weak Acids Upon Titration
- Enthalpy and Entropy of a Reaction
- Redox Titration
- Construction of Simple Batteries and Measurement of Half-Cell Potentials
- Organic Chemistry 1
- ABOUT US
Office: 350 CPB, Email: firstname.lastname@example.org, Phone: 817-272-3802, FAX: 817-272-3808
Enzymes that use Cofactor F420 -- Structure determination by spectroscopic techniques and X-ray crystallography -- Enzyme kinetics and mechanism by rapid-mixing pre-steady state and steady state methods. -- Investigation of reaction intermediates by kinetic isotope effects.
Davis, A.C., Johnson-Winters. K.; Arnold A.R.; Tollin, G.; Enemark J.H.;“Kinetic results for mutations of conserved residues H304 and R309 of human sulfite oxidase point to mechanistic complexities” Metallomics. 2014 6(9):1664-70.
Johnson-Winters, K.; Davis, A.C.; Arnold, A.R.; Berry, R.E.; Tollin, G; Enemark, J.H.;“Probing the role of a conserved salt bridge in the intramolecular electron transfer kinetics of human sulfite oxidase” J Biol Inorg Chem. 2013 (6):645-53.
Astashkin, A.V.; Rajapakshe, A.; Cornelison, M.J.; Johnson-Winters, K., Enemark J.H.;“Determination of the distance between the Mo(V) and Fe(III) heme centers of wild type human sulfite oxidase by pulsed EPR spectroscopy”J Phys Chem B. 2012 116(6):1942-50.
Klein, E.L.; Raitsimring, A.M.; Astashkin, A.V.; Rajapakshe, A.; Johnson-Winters, K.; Arnold, A.R.; Potapov, A.; Goldfarb, D.; Enemark, J.H.;“Identity of the exchangeable sulfur-containing ligand at the Mo(V) center of R160Q human sulfite oxidase” Inorg Chem. 2012 51(3):1408-18.
Johnson-Winters, K.; Nordstrom, A.R.; Davis, A.C.; Tollin, G.; Enemark, J.H.;“Effects of large-scale amino acid substitution in the polypeptide tether connecting the heme and molybdenum domains on catalysis in human sulfite oxidase” Metallomics 2010 Nov;2(11):766-70.
Johnson-Winters, K.; Tollin, G.; Enemark, J.H.;“Elucidating the catalytic mechanism of sulfite oxidizing enzymes using structural, spectroscopic, and kinetic analyses” Biochemistry 2010 49(34):7242-54.
Rajapakshe A.; Johnson-Winters, K.; Nordstrom, A.R.; Meyers, K.T.; Emesh, S.; Astashkin, A.V.; Enemark, J.H.;“Characterization of chloride-depleted human sulfite oxidase by electron paramagnetic resonance spectroscopy: experimental evidence for the role of anions in product release” Biochemistry 2010 49, 5154-9.
Trevor D. Rapson, Andrei V. Astashkin, Kayunta Johnson-Winters, ,Paul V. Bernhardt, Ulrike Kappler, Arnold M. Raitsimring, John H. Enemark, “Pulsed EPR investigations of the Mo(V) centers of the R55Q and R55M variants of sulfite dehydrogenase from Starkeya novella” J Biol Chem. 2010 15, 505-514
Kayunta Johnson-Winters, Anna Nordstrom, Safia Emesh, Andrei Astashkine, Asha Rajapakshe, Robert Berry, John Yang, Gordon Tollin, K.V. Rajagopolan and John H. Enemark ”Effects of Interdomain-Tether Length and Flexibility on the Kinetics of Intramolecular Electron Transfer in Human Sulfite Oxidase” Biochemistry 2010 49, 1290-6
Andrei V. Astashkin, Eric L. Klein, Dmitry Ganyushin, Kayunta Johnson-Winters, Frank Neese , Ulrike Kappler, John H. Enemark, “Exchangeable oxygens in the vicinity of molybdenum center of the high-pH form of sulfite oxidase and sulfite dehydrogenase,”Phys Chem Chem Phys. 2009 11, 6733–6742.
Eric L. Klein, Andrei V. Astashkin, Dmitry Ganyushin, Christoph Riplinger, Kayunta Johnson-Winters, Frank Neese, John H. Enemark, “Direct detection and characterization of chloride in the active site of the low-pH form of sulfite oxidase using electron spin echo envelope modulation spectroscopy, isotopic labeling, and density functional theory calculations,” Inorg Chem 2009 48, 4743-52.
Susan Bailey, Trevor Rapson, Kayunta Johnson-Winters, Andrei V. Astashkin and John H. Enemark, “Molecular Basis for Enzymatic Sulfite Oxidation-How Three Conserved Active Site Residues Shape Enzyme Activity” J Biol Chem. 2008 284, 2053-63.
Andrei V. Astashkin, Kayunta Johnson-Winters, Eric L. Klein, Changjian Feng, Heather L. Wilson, K. V. Rajagopalan, Arnold M. Raitsimring, John H. Enemark, “Structural studies of the molybdenum center of the pathogenic R160Q mutant of human sulfite oxidase by pulsed EPR spectroscopy and 17O and 33S labeling “ J Am Chem Soc. 2008 130, 8471-80.
Andrei V. Astashkin, Kayunta Johnson-Winters, Eric L. Klein, Robert S. Byrne, Russ Hille, Arnold M. Raitsimring, John H. Enemark,“Direct demonstration of the presence of coordinated sulfate in the reaction pathway of Arabidopsis thaliana sulfite oxidase using 33S labeling and ESEEM spectroscopy” J Am Chem Soc. 2007 129, I14800-10.
Kayunta Johnson-Winters, Vincent M. Purpero, Michael Kavana, and Graham R. Moran, "The Accumulation of Mulitple Intermediates in the Catalytic Cycle of (4-Hydroxyphenyl)pyruvate Dioxygenase from Streptomyces avermitilis." Biochemistry 2005 44, 7189-7199.
June M. Brownlee, Kayunta Johnson-Winters, David H.T. Harrison, and Graham R. Moran, "Structure of the Ferrous Form of (4-Hydroxyphenyl)pyruvate Dioxygenase from Streptomyces avermitilis in Complex with the Therapeutic Herbicide, NTBC” Biochemistry 2004 43, 6370-6377.
Kayunta Johnson-Winters, Vincent M. Purpero, Michael L. Kavana, Tamara N. Nelson, and Graham R. Moran "(4-Hydroxyphenyl)pyruvate Dioxygenase from Streptomyces avermitilis: The Basis for Ordered Substrate Addition" Biochemistry 2003 42, 2072-2080.
Postdoctoral Research June, 2006-July, 2010, University of Arizona, Tucson, Arizona,Project: Kinetics and Spectroscopy of Sulfite Oxidase and Related Molybdenum Enzymes, in the laboratory of Prof. John H. Enemark
PhD, in Biochemistry, University of Wisconsin-Milwaukee, Milwaukee, WI, May, 2006 Dissertation Title: Structural and Kinetic Characterization of 4-Hydroxyphenylpyruvate Dioxygenase from Streptomyces avermitilis.
Bachelors of Arts. Alverno College, Milwaukee, WI, May 1999, Majors: Biology and Chemistry
Kayunta Johnson- Winters was born in Bastrop, Louisiana, but grew up in Milwaukee, WI. In 1999, Kayunta received her bachelor’s degree from Alverno College, double majoring in Biology and Chemistry. She received her PhD in Biochemistry, under the academic advisory of Prof. Graham R. Moran at the University of Wisconsin-Milwaukee in 2006. At UWM, her studies were on the structure and kinetics of non-heme iron dioxygenases, primarily, the enzyme, 4-Hydroxyphenylpyruvate Dioxygenase (HPPD). She did her postdoctoral studies at the University of Arizona with Regents Professor, Dr. John H. Enemark. There her project was, "Kinetics and Spectroscopy of Sulfite Oxidase and Related Molybdenum Enzymes." At the University of Arizona, she was awarded the national NIH (National Institutes of Health) fellowship, The Ruth L. Kirschstein Service Award. Her current research interests are to characterize F420 Cofactor Dependent Enzymes.
Member: American Chemical Society
Awards: 2007 National Institutes of Health(NIH) Ruth L. Kirschstein National Research Service Award