article Open AccessTop 10% cited
Nanomolar concentrations of nitric oxide reversibly inhibit synaptosomal respiration by competing with oxygen at cytochrome oxidase
FEBS Letters · 1994 · Vol. 356(2-3) · pp. 295–298
Guy C. Brown✉(University College London)Chris E. Cooper(University College London)
Abstract
Nitric oxide (NO) reversibly inhibited oxygen consumption of brain synaptosomes. Inhibition was reversible, occurred at the level of cytochrome oxidase, and was apparently competitive with oxygen, with half-inhibition by 270 nM NO at oxygen concentrations around 145 microM and by 60 nM at around 30 microM O2. Isolated cytochrome oxidase was inhibited by similar levels of NO. These levels of NO are within the measured physiological and pathological range for a number of tissues and conditions, suggesting that NO inhibition of cytochrome oxidase and the competition with oxygen may occur in vivo.
Nitric Oxide and Endothelin EffectsMitochondrial Function and PathologyPhotoreceptor and optogenetics researchCytochrome c oxidaseOxygenNitric oxideChemistryCytochromeElectron Transport Complex IVRespirationOxidase testCytochrome cBiochemistry
MeSH terms
AnimalsBinding, CompetitiveBrainElectron Transport Complex IVKineticsLightMicrochemistryNitric OxideNitroprussideOxygenOxygen ConsumptionSynaptosomesRats
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References
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FEBS Letters · 1994 · 1,225 citations
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The FASEB Journal · 1992 · 4,383 citations
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