K V. Rajagopalan

Duke University, Durham, NC 
"K Rajagopalan"
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Carrie T. Koenigstein grad student 2000 Duke
Kimberly J. Nelson grad student 2003 Duke
James A. Qiu grad student 2009 Duke
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Reschke S, Niks D, Wilson H, et al. (2013) Effect of exchange of the cysteine molybdenum ligand with selenocysteine on the structure and function of the active site in human sulfite oxidase. Biochemistry. 52: 8295-303
Qiu JA, Wilson HL, Rajagopalan KV. (2012) Structure-based alteration of substrate specificity and catalytic activity of sulfite oxidase from sulfite oxidation to nitrate reduction. Biochemistry. 51: 1134-47
Pushie MJ, Doonan CJ, Wilson HL, et al. (2011) Nature of halide binding to the molybdenum site of sulfite oxidase. Inorganic Chemistry. 50: 9406-13
Leimkühler S, Wuebbens MM, Rajagopalan KV. (2011) The History of the Discovery of the Molybdenum Cofactor and Novel Aspects of its Biosynthesis in Bacteria. Coordination Chemistry Reviews. 255: 1129-1144
Qiu JA, Wilson HL, Pushie MJ, et al. (2010) The structures of the C185S and C185A mutants of sulfite oxidase reveal rearrangement of the active site. Biochemistry. 49: 3989-4000
Astashkin AV, Johnson-Winters K, Klein EL, et al. (2008) Structural studies of the molybdenum center of the pathogenic R160Q mutant of human sulfite oxidase by pulsed EPR spectroscopy and 17O and 33S labeling. Journal of the American Chemical Society. 130: 8471-80
Raitsimring AM, Astashkin AV, Feng C, et al. (2008) Studies of the Mo(V) Center of the Y343F Mutant of Human Sulfite Oxidase by Variable Frequency Pulsed EPR Spectroscopy. Inorganica Chimica Acta. 361: 941-946
Doonan CJ, Wilson HL, Bennett B, et al. (2008) MoV electron paramagnetic resonance of sulfite oxidase revisited: the low-pH chloride signal. Inorganic Chemistry. 47: 2033-8
Dronov R, Kurth DG, Möhwald H, et al. (2008) Layer-by-layer arrangement by protein-protein interaction of sulfite oxidase and cytochrome c catalyzing oxidation of sulfite. Journal of the American Chemical Society. 130: 1122-3
Zhang L, Nelson KJ, Rajagopalan KV, et al. (2008) Structure of the molybdenum site of Escherichia coli trimethylamine N-oxide reductase. Inorganic Chemistry. 47: 1074-8
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