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The Journal of Biological Chemistry|October 6, 2007
Butyl isocyanide as a probe of the activation mechanism of soluble guanylate cyclase. Investigating the role of non-heme nitric oxideEmily R Derbyshire, Michael A MarlettaACS Chemical Biology|December 16, 2006
Utilizing RNA aptamers to probe a physiologically important heme-regulated cellular networkJacquin C Niles, Michael A MarlettaChemical Reviews|June 29, 2026
Copper-Dependent Polysaccharide Monooxygenases: Mechanism and FunctionAllison E Batka, Michael A MarlettaCellular and Molecular Life Sciences : CMLS|May 13, 2016
Starch-degrading polysaccharide monooxygenasesVan V Vu, Michael A MarlettaJournal of the American Chemical Society|August 3, 2006
Sensitive and selective detection of nitric oxide using an H-NOX domainElizabeth M Boon, Michael A MarlettaBioorganic & Medicinal Chemistry Letters|July 5, 2005
L-arginine analogs as alternate substrates for nitric oxide synthaseScott D Luzzi, Michael A MarlettaJournal of Inorganic Biochemistry|April 7, 2005
Ligand specificity of H-NOX domains: from sGC to bacterial NO sensorsElizabeth M Boon, Michael A MarlettaChembiochem : a European Journal of Chemical Biology|April 5, 2012
Insight into the rescue of oxidized soluble guanylate cyclase by the activator cinaciguatNur Basak Surmeli, Michael A MarlettaCurrent Opinion in Chemical Biology|November 7, 2012
Mechanisms of S-nitrosothiol formation and selectivity in nitric oxide signalingBrian C Smith, Michael A MarlettaCurrent Opinion in Chemical Biology|August 30, 2005
Ligand discrimination in soluble guanylate cyclase and the H-NOX family of heme sensor proteinsElizabeth M Boon, Michael A MarlettaPageof 17