Tetrahydrobiopterin and nitric oxide synthase recouplers

Generation of nitric oxide (NO) by the nitric oxide synthase (NOS) enzymes plays multiple signalling roles in every organ system, with crucial roles in the cardiovascular system, mediated by endothelial nitric oxide synthase (eNOS, encoded by NOS3) and neuronal nitric oxide synthase (nNOS, encoded b...

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Main Author: Channon, KM
Format: Journal article
Language:English
Published: Springer, Cham 2020
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author Channon, KM
author_facet Channon, KM
author_sort Channon, KM
collection OXFORD
description Generation of nitric oxide (NO) by the nitric oxide synthase (NOS) enzymes plays multiple signalling roles in every organ system, with crucial roles in the cardiovascular system, mediated by endothelial nitric oxide synthase (eNOS, encoded by NOS3) and neuronal nitric oxide synthase (nNOS, encoded by NOS1) in regulation of blood pressure, flow, oxygen delivery and cardiac function. Loss of normal NO-mediated functions in cardiovascular disease state is associated with changes in nitroso-redox signalling that are not dependent solely upon altered NO generation, but increased generation of reactive oxygen species (ROS). The NOS enzymes can also generate ROS, in a catalytic mode whereby the generation of NO from L-arginine is 'uncoupled' from the reduction of molecular oxygen. NOS uncoupling is determined by several factors, including the availability and oxidation state of the required NOS cofactor, tetrahydrobiopterin (BH4). The duality of NOS functions as enzymes that generate both NO and ROS under different regulatory states has emerged as an important pathophysiologic mechanism, and is a potential therapeutic target, via agents that can maintain or restore NOS coupling, for example via effects on BH4 availability.
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spelling oxford-uuid:50418d48-6765-40a7-bc9d-665dbcec3d262022-03-26T16:12:27ZTetrahydrobiopterin and nitric oxide synthase recouplersJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:50418d48-6765-40a7-bc9d-665dbcec3d26EnglishSymplectic ElementsSpringer, Cham2020Channon, KMGeneration of nitric oxide (NO) by the nitric oxide synthase (NOS) enzymes plays multiple signalling roles in every organ system, with crucial roles in the cardiovascular system, mediated by endothelial nitric oxide synthase (eNOS, encoded by NOS3) and neuronal nitric oxide synthase (nNOS, encoded by NOS1) in regulation of blood pressure, flow, oxygen delivery and cardiac function. Loss of normal NO-mediated functions in cardiovascular disease state is associated with changes in nitroso-redox signalling that are not dependent solely upon altered NO generation, but increased generation of reactive oxygen species (ROS). The NOS enzymes can also generate ROS, in a catalytic mode whereby the generation of NO from L-arginine is 'uncoupled' from the reduction of molecular oxygen. NOS uncoupling is determined by several factors, including the availability and oxidation state of the required NOS cofactor, tetrahydrobiopterin (BH4). The duality of NOS functions as enzymes that generate both NO and ROS under different regulatory states has emerged as an important pathophysiologic mechanism, and is a potential therapeutic target, via agents that can maintain or restore NOS coupling, for example via effects on BH4 availability.
spellingShingle Channon, KM
Tetrahydrobiopterin and nitric oxide synthase recouplers
title Tetrahydrobiopterin and nitric oxide synthase recouplers
title_full Tetrahydrobiopterin and nitric oxide synthase recouplers
title_fullStr Tetrahydrobiopterin and nitric oxide synthase recouplers
title_full_unstemmed Tetrahydrobiopterin and nitric oxide synthase recouplers
title_short Tetrahydrobiopterin and nitric oxide synthase recouplers
title_sort tetrahydrobiopterin and nitric oxide synthase recouplers
work_keys_str_mv AT channonkm tetrahydrobiopterinandnitricoxidesynthaserecouplers