Douglas Goodwin

Affiliations: 
Auburn University, Auburn, AL, United States 
Area:
Biochemistry
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"Douglas Goodwin"
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Publications

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Njuma OJ, Davis I, Ndontsa EN, et al. (2017) Mutual synergy between catalase and peroxidase activities of the bifunctional enzyme KatG is facilitated by electron-hole hopping within the enzyme. The Journal of Biological Chemistry
Kudalkar SN, Njuma OJ, Li Y, et al. (2015) A role for catalase-peroxidase large loop 2 revealed by deletion mutagenesis: control of active site water and ferric enzyme reactivity. Biochemistry. 54: 1648-62
Njuma OJ, Ndontsa EN, Goodwin DC. (2014) Catalase in peroxidase clothing: Interdependent cooperation of two cofactors in the catalytic versatility of KatG. Archives of Biochemistry and Biophysics. 544: 27-39
Wang Y, Goodwin DC. (2013) Integral role of the I'-helix in the function of the "inactive" C-terminal domain of catalase-peroxidase (KatG). Biochimica Et Biophysica Acta. 1834: 362-71
Kudalkar SN, Campbell RA, Li Y, et al. (2012) Enhancing the peroxidatic activity of KatG by deletion mutagenesis Journal of Inorganic Biochemistry. 116: 106-115
Ndontsa EN, Moore RL, Goodwin DC. (2012) Stimulation of KatG catalase activity by peroxidatic electron donors. Archives of Biochemistry and Biophysics. 525: 215-22
Mancuso JD, Tribble D, Mazurek GH, et al. (2011) Impact of targeted testing for latent tuberculosis infection using commercially available diagnostics. Clinical Infectious Diseases : An Official Publication of the Infectious Diseases Society of America. 53: 234-44
Tejero J, Biswas A, Haque MM, et al. (2011) Mesohaem substitution reveals how haem electronic properties can influence the kinetic and catalytic parameters of neuronal NO synthase. The Biochemical Journal. 433: 163-74
Wang Y, Goodwin D. (2011) Contribution of An “Inactive” Domain To Rapid H2O2Decomposition by KatG Free Radical Biology and Medicine. 51: S151
Moore RL, Cook CO, Williams R, et al. (2008) Substitution of strictly conserved Y111 in catalase-peroxidases: Impact of remote interdomain contacts on active site structure and catalytic performance. Journal of Inorganic Biochemistry. 102: 1819-24
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