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The Journal of Biological Chemistry|September 29, 1995
Neuronal nitric oxide synthase self-inactivates by forming a ferrous-nitrosyl complex during aerobic catalysisH M Abu-Soud, J Wang, D L Rousseau, et al.Biochemistry|March 28, 1998
Deuterium kinetic isotope effects and the mechanism of the bacterial luciferase reactionW A Francisco, H M Abu-Soud, A J DelMonte, et al.The Journal of Clinical Investigation|March 21, 1998
Nitric oxide synthesis in the lung. Regulation by oxygen through a kinetic mechanismR A Dweik, D Laskowski, H M Abu-Soud, et al.Journal of Assisted Reproduction and Genetics|July 2, 2013
Uterine fibroids are characterized by an impaired antioxidant cellular system: potential role of hypoxia in the pathophysiology of uterine fibroidsN M Fletcher, M G Saed, H M Abu-Soud, et al.Biochemistry|February 7, 1998
Comparative functioning of dihydro- and tetrahydropterins in supporting electron transfer, catalysis, and subunit dimerization in inducible nitric oxide synthaseA Presta, U Siddhanta, C Wu, et al.The Journal of Biological Chemistry|August 23, 1996
Characterization of the reductase domain of rat neuronal nitric oxide synthase generated in the methylotrophic yeast Pichia pastoris. Calmodulin response is complete within the reductase domain itselfR Gachhui, A Presta, D F Bentley, et al.The Journal of Biological Chemistry|April 16, 1998
Neuronal nitric-oxide synthase interaction with calmodulin-troponin C chimerasR Gachhui, H M Abu-Soud, D K Ghosha, et al.Proceedings of the National Academy of Sciences of the United States of America|February 28, 2001
NO chemical events in the human airway during the immediate and late antigen-induced asthmatic responseR A Dweik, S A Comhair, B Gaston, et al.Circulation Research|November 13, 1999
Formation of nitric oxide-derived oxidants by myeloperoxidase in monocytes: pathways for monocyte-mediated protein nitration and lipid peroxidation In vivoS L Hazen, R Zhang, Z Shen, et al.Pageof 4