| Literature DB >> 26770654 |
Abstract
Entities:
Mesh:
Substances:
Year: 2015 PMID: 26770654 PMCID: PMC4685437 DOI: 10.1155/2016/4867124
Source DB: PubMed Journal: Oxid Med Cell Longev ISSN: 1942-0994 Impact factor: 6.543
Scheme 1Enzymatic production of NO from l-arginine.
Scheme 2Nitroxyl release from AS.
Scheme 3Nitroxyl release from Piloty's acid.
Scheme 4Nitroxyl release from cyanamide.
Scheme 5Nitroxyl release from IPA/NO.
Scheme 6Nitroxyl release from acyl nitroso compounds.
Scheme 7Nitroxyl release from acyloxy nitroso compounds.
Scheme 8Oxidation of hydroxylamine to HNO by high-valent iron-oxo complexes.
Comparison of NO and HNO reactivity with biological reactants [28].
| Biological reactant | NO | HNO |
|---|---|---|
| NO | No reaction | Forms N2O2 −/HN2O2 unknown chemistry |
| HNO | Forms N2O2 −/HN2O2 unknown chemistry | Dimerization and decomposition to N2O |
| O2 | Autoxidation leading to nitrosative species, that is, NO2 and N2O3 | Forms a potent 2e− oxidant that is not ONOO− |
| RSH/RS− | No direct reaction | Forms sulfinamide or disulfide + hydroxylamine |
| Fe(II) heme | Very stable Fe(II)-NO | Forms coordination complex |
| Fe(III) heme | Forms unstable electrophilic nitrosyl, first step in reductive nitrosylation | Very stable Fe(II)-NO except sGC |
| Cu2+ | No reaction | Reduces Cu2+ to Cu+ yielding NO |
| Lipid radical | Yields lipid-NO | Yields lipid-H + NO |
Scheme 9Reaction of HNO with thiols.
Scheme 10Reaction of HNO with triphenylphosphine.
Scheme 11Staudinger ligation of HNO with triarylphosphines.
Scheme 12Reaction of AS with nitrosobenzene.
Scheme 13Ligation of AS with arylphosphines producing phenols that can be monitored calorimetrically.