4.5 Article

Isoform-specific differences in the nitrite reductase activity of nitric oxide synthases under hypoxia

期刊

BIOCHEMICAL JOURNAL
卷 418, 期 -, 页码 673-682

出版社

PORTLAND PRESS LTD
DOI: 10.1042/BJ20080987

关键词

chemiluminescence; hypoxia; microvascular endothelial cell; nitric oxide synthase (NOS); nitrite reduction; NO electrode

资金

  1. Ministerstvo Skolstvi
  2. Mladeze a Telovychovy (Ministry of Education, Youth and Sports) of the Czech Republic [1M 6837805002, 0021620806]
  3. Agency of Charles University of Prague [252021102107]
  4. Natural Sciences and Engineering Research Council Discovery

向作者/读者索取更多资源

Nitrite (NO2-) recycling to nitric oxide (NO) is catalysed by a number of enzymes and induces a protective vasodilation effect under hypoxia/ischaemia. In the present work, we tested the in vitro ability of the three NOS (nitric oxide synthase) isoforms to release NO from nitrite under anoxia using electrochemical detection, chemiluminescence and absorption spectroscopy. The release of free NO from anoxic nitrite Solutions at 15 mu M was specific to the endothelial NOS isoform (eNOS) and did not occur with the neuronal (nNOS) or inducible (iNOS) isoforms. Unlike xanthine oxidase, the eNOS reductase domain did not recycle nitrite to NO, and wild-type eNOS did not reduce nitrate. Our data Suggest that structural and, by inference, dynamic differences between nNOS and eNOS in the distal haem side account for eNOS being the only isoform capable of converting nitrite into NO at pH 7.6. In human dermal microvascular endothelial cells under careful control of oxygen tension, the rates of NO formation determined by chemiluminescence were enhanced similar to 3.6- and similar to 8.3-fold under hypoxia (2 p.p.m. O-2) and anoxia (argon) respectively compared with normoxia (similar to 22 p.p.m. O-2) using 10 mu M extracellular nitrite. NOS inhibitors inhibited this hypoxic NO release. Our data show that eNOS is unique in that it releases NO under all oxygen levels from normoxia to complete anoxia at physiological micromolar nitrite concentrations. The magnitude of the hypoxic NO release by the endothelial cells suggest that the endothelium could provide an appropriate response to acute episodic ischaemia and may explain the observed eNOS-expression-specific protective effect as a short-term response in animal models of acute hypoxia.

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