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The Journal of Biological Chemistry|June 8, 2004
Nox3 regulation by NOXO1, p47phox, and p67phoxGuangjie Cheng, Darren Ritsick, J David Lambeth
Free Radical Biology & Medicine|October 2, 2013
On the use of L-012, a luminol-based chemiluminescent probe, for detecting superoxide and identifying inhibitors of NADPH oxidase: a reevaluationJacek Zielonka, J David Lambeth, Balaraman Kalyanaraman
Free Radical Biology & Medicine|July 3, 2007
Regulation of Nox and Duox enzymatic activity and expressionJ David Lambeth, Tsukasa Kawahara, Becky Diebold
BMC Evolutionary Biology|July 7, 2007
Molecular evolution of the reactive oxygen-generating NADPH oxidase (Nox/Duox) family of enzymesTsukasa Kawahara, Mark T Quinn, J David Lambeth
The Journal of Biological Chemistry|July 5, 2005
Point mutations in the proline-rich region of p22phox are dominant inhibitors of Nox1- and Nox2-dependent reactive oxygen generationTsukasa Kawahara, Darren Ritsick, Guangjie Cheng, et al.
Seminars in Immunopathology|May 30, 2008
NOX enzymes as novel targets for drug developmentJ David Lambeth, Karl-Heinz Krause, Robert A Clark
The Journal of Biological Chemistry|April 26, 2006
Nox1-dependent reactive oxygen generation is regulated by Rac1Guangjie Cheng, Becky A Diebold, Yasmin Hughes, et al.
Free Radical Biology & Medicine|June 15, 2007
Nox regulation of smooth muscle contractionDarren R Ritsick, William A Edens, Victoria Finnerty, et al.
Antioxidants & Redox Signaling|February 12, 2014
NOX2 As a Target for Drug Development: Indications, Possible Complications, and ProgressBecky A Diebold, Susan M E Smith, Yang Li, et al.
Biochemical Society Symposium|March 22, 2005
The use of model systems to study biological functions of Nox/Duox enzymesDarren R Ritsick, William A Edens, James W McCoy, et al.
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