Nos1: Difference between revisions
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Nitric oxide synthases consume L-arginine and molecular oxygen to form the free radical nitric oxide, which acts as a signaling molecule in a wide range of molecular and biological processes. <ref>Hou, YC; Janczuk, A; Wang, PG (1999). "Current trends in the development of nitric oxide donors". Current pharmaceutical design 5 (6): 417–41.</ref> The reaction catalyzed by nitric oxide synthase is shown below. <ref>Knowles RG, Moncada S (March 1994). "Nitric oxide synthases in mammals". Biochem. J. 298 (2): 249–58. PMC 1137932. PMID 7510950.</ref> | Nitric oxide synthases consume L-arginine and molecular oxygen to form the free radical nitric oxide, which acts as a signaling molecule in a wide range of molecular and biological processes.<ref>Hou, YC; Janczuk, A; Wang, PG (1999). "Current trends in the development of nitric oxide donors". Current pharmaceutical design 5 (6): 417–41.</ref> The reaction catalyzed by nitric oxide synthase is shown below.<ref>Knowles RG, Moncada S (March 1994). "Nitric oxide synthases in mammals". Biochem. J. 298 (2): 249–58. PMC 1137932. PMID 7510950.</ref> | ||
2 L-arginine + 3 NADPH + 4 O(2) = 2 L- citrulline + 2 nitric oxide + 3 NADP(+) + 4 H(2)O | 2 L-arginine + 3 NADPH + 4 O(2) = 2 L- citrulline + 2 nitric oxide + 3 NADP(+) + 4 H(2)O | ||
In humans, three nitric oxide synthase isoforms are expressed which include NOS1 (neuronal NOS or nNOS), NOS2 (inducible NOS or iNOS), and NOS3 (endothelial NOS or eNOS). <ref>Stuehr DJ (May 1999). "Mammalian nitric oxide synthases". Biochim. Biophys. Acta 1411 (2–3): 217–30. doi:10.1016/S0005-2728(99)00016-X. PMID 10320659.</ref> NOS1 is located on chromosome 12 <ref>Knowles RG, Moncada S (March 1994). "Nitric oxide synthases in mammals". Biochem. J. 298 (2): 249–58. PMC 1137932. PMID 7510950.</ref> and is highly expressed in skeletal muscle, brain as well as testicular, lung, and kidney tissue. Moderate expression has also been observed in heart, adrenal gland, and retinal tissues <ref>Ward ME, Toporsian M, Scott JA, et al. Hypoxia induces a functionally significant and translationally efficient neuronal NO synthase mRNA variant. Journal of Clinical Investigation. 2005;115(11):3128-3139. doi:10.1172/JCI20806.</ref> | In humans, three nitric oxide synthase isoforms are expressed which include NOS1 (neuronal NOS or nNOS), NOS2 (inducible NOS or iNOS), and NOS3 (endothelial NOS or eNOS).<ref>Stuehr DJ (May 1999). "Mammalian nitric oxide synthases". Biochim. Biophys. Acta 1411 (2–3): 217–30. doi:10.1016/S0005-2728(99)00016-X. PMID 10320659.</ref> NOS1 is located on chromosome 12<ref>Knowles RG, Moncada S (March 1994). "Nitric oxide synthases in mammals". Biochem. J. 298 (2): 249–58. PMC 1137932. PMID 7510950.</ref> and is highly expressed in skeletal muscle, brain as well as testicular, lung, and kidney tissue. Moderate expression has also been observed in heart, adrenal gland, and retinal tissues.<ref>Ward ME, Toporsian M, Scott JA, et al. Hypoxia induces a functionally significant and translationally efficient neuronal NO synthase mRNA variant. Journal of Clinical Investigation. 2005;115(11):3128-3139. doi:10.1172/JCI20806.</ref> | ||
A few examples of molecular processes include heme binding, NADP binding, calcium signaling, and oxidation-reduction reactions. Biological examples include regulation of cardiac muscle contraction, blood coagulation, aging, and regulation of neurogenesis.<ref>UniProt Consortium 2009, ‘UniProtKB - P29475 (NOS1_HUMAN),’ UniProtKB Protein Knowledgebase</ref> | |||
Revision as of 03:39, 28 April 2016
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References
Shinkai, T., Ohmori, O., Hori, H., and Nakamura, J. (2002) Allelic association of the neuronal nitric oxide synthase (NOS1) gene with schizophrenia. Molecular Psychiatry. 7, 560-563. doi:10.1038/sj.mp.4001041 Galimberti, D., Scarpini, E., Venturelli, E., Strobel, A., Herterich, S., Fenogolio, C., Guidi, I., Scalabrini, D., Cortini, F., Bresolin, N., Lesch, K., and Reif, A. (2008) Association of a NOS1 promoter repeat with Alzheimer’s disease. Neurobiology of Aging. 29, 1359-1365. doi:10.1016/j.neurobiolaging.2007.03.003 Rife, T., Rasoul, B., Pullen, N., Mitchell, D., Grathwol, K., and Kurth, J. (2009) The effect of a promoter polymorphism on transcription of nitric oxide synthase 1 and its relevance to Parkinson’s disease. Journal of Neuroscience Research. 87, 2319-2325. doi:10.1005/jnr.22045
Li H, Jamal J, Plaza C, et al. Structures of human constitutive nitric oxide synthases. Acta Crystallographica Section D: Biological Crystallography. 2014;70(Pt 10):2667-2674.