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Heme oxygenase, a likely regulator of cGMP production in the brain: Induction in vivo of HO-1 compensates for depression in NO synthase activity
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Maines, M. D., J. A. Mark, and J. F. Ewing (1993). Heme oxygenase, a likely regulator of cGMP production in the brain: Induction in vivo of HO-1 compensates for depression in NO synthase activity. Mol. Cell. Neurosci. 4: 398-405.
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0019883606
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Zinc-protoporphyrin is a selective inhibitor of heme oxygenase activity in the neonatal rat
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Maines, M. D. (1981). Zinc-protoporphyrin is a selective inhibitor of heme oxygenase activity in the neonatal rat. Biochim. Biophys. ACTA 673: 339-350.
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Maines, M.D.1
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58
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0026716352
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Differential regulation of heme oxygenase isozymes by Sn- and Zn-protoporphyrins: Possible relevance to suppression of hyperbilirubinemia
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Maines, M. D., and G. M. Trakshel (1992). Differential regulation of heme oxygenase isozymes by Sn- and Zn-protoporphyrins: Possible relevance to suppression of hyperbilirubinemia. Biochim. Biophys. Acta 1131: 166-174.
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Biochim. Biophys. Acta
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Maines, M.D.1
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59
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0023835962
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Rat liver cytochrome P-450b, P-420b, and P-420c are degraded to biliverdin by heme oxygenase
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Kutty, R. K., R. F. Daniel, D. E. Ryan, W. Levin, and M. D. Maines (1988). rat liver cytochrome P-450b, P-420b, and P-420c are degraded to biliverdin by heme oxygenase. Arch. Biochem. Biophys. 260: 638-644.
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60
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Hepatic heme metabolism: Possible role of biliverdin in the regulation of heme oxygenase activity
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Kutty, R. K., and M. D. Maines (1984). Hepatic heme metabolism: Possible role of biliverdin in the regulation of heme oxygenase activity. Biochem. Biophys. Res. Commun. 122: 40-46.
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61
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Purification and characterization of biliverdin reductase from the rat liver
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Kutty, R. K., and M. D. Maines (1981). Purification and characterization of biliverdin reductase from the rat liver. J. Biol. Chem. 256: 3956-3962.
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62
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0343046540
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Formation of nitric oxide from L-arginine in the central nervous system: A transduction mechanism for stimulation of the soluble guanylate cyclase
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Knowles, R. G., M. Palacios, R. M. Palmer, and S. Moncada (1989). Formation of nitric oxide from L-arginine in the central nervous system: A transduction mechanism for stimulation of the soluble guanylate cyclase. Proc. Natl. Acad. Sci. USA 86: 5159-5162.
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Localization in mammalian brain of G-substrate, a specific substrate for guanosine 3', 5'-cyclic monophosphate-dependent protein kinase. J
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Detre, J. A., A. C. Nairn, D. W. Aswad, and P. Greengard (1984). Localization in mammalian brain of G-substrate, a specific substrate for guanosine 3', 5'-cyclic monophosphate-dependent protein kinase. J. Neurosci. 4: 2843-2849.
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Dehydrogenase conversion to oxidase and lipid peroxidation in brain after carbon monoxide poisoning
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Recovery of energy metabolism in rat brain after carbon monoxide hypoxia
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Brown, S. D., and C. A. Piantadosi (1992). Recovery of energy metabolism in rat brain after carbon monoxide hypoxia. J. Clin. Invest. 89: 666-672.
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67
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Enzymatic oxidation of co-bait-protoporphyrin-IX: Observations on the mechanism of heme oxygenase
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Maines, M. D., and A. Kappas (1977). Enzymatic oxidation of co-bait-protoporphyrin-IX: Observations on the mechanism of heme oxygenase. Biochemistry 16: 419-422.
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Biochemistry
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68
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0025939631
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Characterization of a cDNA encoding rabbit brain heme oxygenase-2 and identification of a conserved domain among mammalian heme oxygenase isozymes: Possible heme-binding site?
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Rotenberg, M. O., and M. D. Maines (1991). Characterization of a cDNA encoding rabbit brain heme oxygenase-2 and identification of a conserved domain among mammalian heme oxygenase isozymes: Possible heme-binding site? Arch, Biochem. Biophys. 290: 336-344.
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69
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Domains of rat heme oxygenase-2. The amino terminus and histidine 151 are required for catalytic activity. Arch
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McCoubrey, W. K., Jr., and M. D. Maines (1993). Domains of rat heme oxygenase-2. The amino terminus and histidine 151 are required for catalytic activity. Arch. Biochem. Biophys. 302: 402-408.
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70
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Interferon-y and tumor necrosis factor synergize to induce nitric oxide production and inhibit mitochondrial respiration in vascular smooth muscle cells
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Geng, Y., Hansson, G. K., and Holme, E. (1992). Interferon-y and tumor necrosis factor synergize to induce nitric oxide production and inhibit mitochondrial respiration in vascular smooth muscle cells. Circul. Res. 71: 1268-1276.
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Does nitric oxide mediate autoimmune destruction of cells?
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Hortelano, S., A. M. Genaro, and L. Bosca (1992). Phorbol esters induce nitric oxide synthase activity in rat hepatocytes. J. Biol. Chem. 267: 24937-24940.
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