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Proceedings of the National Academy of Sciences of the United States of America|November 15, 1993
Nitric oxide synthases reveal a role for calmodulin in controlling electron transferH M Abu-Soud, D J StuehrThe Journal of Biological Chemistry|November 25, 2000
Nitric oxide is a physiological substrate for mammalian peroxidasesH M Abu-Soud, S L HazenThe Journal of Biological Chemistry|February 22, 2000
Nitric oxide modulates the catalytic activity of myeloperoxidaseH M Abu-Soud, S L HazenBiochemistry|September 6, 2001
Interrogation of heme pocket environment of mammalian peroxidases with diatomic ligandsH M Abu-Soud, S L HazenBiochemistry|September 5, 1995
Subunit dissociation and unfolding of macrophage NO synthase: relationship between enzyme structure, prosthetic group binding, and catalytic functionH M Abu-Soud, M Loftus, D J StuehrThe Journal of Biological Chemistry|December 20, 1996
Nitric oxide binding to the heme of neuronal nitric-oxide synthase links its activity to changes in oxygen tensionH M Abu-Soud, D L Rousseau, D J StuehrBritish Journal of Pharmacology|June 3, 2008
Analysis of the mechanism by which melatonin inhibits human eosinophil peroxidaseT Lu, S Galijasevic, I Abdulhamid, et al.Free Radical Biology & Medicine|August 18, 2000
Myeloperoxidase-generated oxidants and atherosclerosisE A Podrez, H M Abu-Soud, S L HazenThe Journal of Biological Chemistry|December 23, 1994
Calmodulin controls neuronal nitric-oxide synthase by a dual mechanism. Activation of intra- and interdomain electron transferH M Abu-Soud, L L Yoho, D J StuehrBiochemistry|February 6, 1996
Domains of macrophage N(O) synthase have divergent roles in forming and stabilizing the active dimeric enzymeD K Ghosh, H M Abu-Soud, D J StuehrPageof 4