Literature DB >> 10513558

Protective role of nitric oxide synthase against ischemia-reperfusion injury in guinea pig myocardial mitochondria.

Y Hotta1, H Otsuka-Murakami, M Fujita, J Nakagawa, M Yajima, W Liu, N Ishikawa, N Kawai, T Masumizu, M Kohno.   

Abstract

In guinea-pig myocardial mitochondria preparation, lowering the Ca2+ concentration or pH level in the perfusate rapidly elevated the fura-2 Ca2+ signal ([Ca2+]m). Pretreatment with 10(-4) M L-Arg inhibited the rapid [Ca2+]m influx, whereas administration of 10(-4) M L-NAME did not, suggesting some association between nitric oxide (NO*) synthase (NOS) activation and Ca2+ kinetics in mitochondria. Immunoblotting analysis showed that endothelial (e)-NOS was present in mitochondria, but not inducible (i)-NOS or brain (b)-NOS. Electron microscopy observations revealed that the e-NOS antibody-reactive site in the mitochondria was the inner cristae. The production of reactive oxygen species and NO* in isolated mitochondria was detected by the spin trapping technique with electron paramagnetic resonance (EPR) spectrometry. Pretreatment with 10(-5) M S-nitroso-N-acetyl-DL-penicillamine (SNAP) and 10(-5) M 3-[2-Hydroxy-1-(1-methylethyl)-2-nitrosohydrazino]-1-propananin e (NOC 5), which spontaneously generate NO*, completely inhibited the [Ca2+]m uptake. In addition, N-morpholino sydnonimine hydrochloride (SIN-1) (10(-5) M), which simultaneously generates NO* as well as *O2- and peroxynitrite anion (ONOO-), inhibited the increase in [Ca2+]m. ONOO- (3 x 10(-4) M) itself also inhibited this increase. Pretreatment with the *O2(-)-scavenger manganese superoxide dismutase or catalase (200 units/ml) completely inhibited the increase in [Ca2+]m caused by lowering of either the Ca2+ concentration or the pH in the perfusate. These results suggested that the formation of reactive oxygen species promoted the [Ca2+]m influx. The agents that inhibited the [Ca2+]m influx improved contractility even in Langendorff preparations after ischemia. Based on these findings, we concluded that e-NOS exists in mitochondria and that NO* may play an important protective role in reperfusion cardiac injury after ischemia, by inhibiting the Ca2+ influx into mitochondria which are otherwise damaged by *O2-.

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Year:  1999        PMID: 10513558     DOI: 10.1016/s0014-2999(99)00531-2

Source DB:  PubMed          Journal:  Eur J Pharmacol        ISSN: 0014-2999            Impact factor:   4.432


  14 in total

1.  Effects of SM-20550, a selective Na+-H+ exchange inhibitor, on the ion transport of myocardial mitochondria.

Authors:  Y Hotta; N Ishikawa; N Ohashi; K Matsui
Journal:  Mol Cell Biochem       Date:  2001-03       Impact factor: 3.396

2.  Protective effects of sarpogrelate, a 5-HT2A antagonist, against postischemic myocardial dysfunction in guinea-pig hearts.

Authors:  Tatsuya Muto; Yoshihiro Hotta; Kunihiro Miyazeki; Hiroaki Ando; Naohisa Ishikawa; Takaaki Hasegawa; Yumi Sugimoto; Jun Yamada; Yasuyoshi Miki
Journal:  Mol Cell Biochem       Date:  2005-04       Impact factor: 3.396

3.  Isoflurane postconditioning protects against reperfusion injury by preventing mitochondrial permeability transition by an endothelial nitric oxide synthase-dependent mechanism.

Authors:  Zhi-Dong Ge; Danijel Pravdic; Martin Bienengraeber; Phillip F Pratt; John A Auchampach; Garrett J Gross; Judy R Kersten; David C Warltier
Journal:  Anesthesiology       Date:  2010-01       Impact factor: 7.892

4.  Applications of electron spin resonance spectrometry for reactive oxygen species and reactive nitrogen species research.

Authors:  Masahiro Kohno
Journal:  J Clin Biochem Nutr       Date:  2010-06-18       Impact factor: 3.114

5.  Absence of nitric-oxide synthase in sequentially purified rat liver mitochondria.

Authors:  Priya Venkatakrishnan; Ernesto S Nakayasu; Igor C Almeida; R Timothy Miller
Journal:  J Biol Chem       Date:  2009-04-16       Impact factor: 5.157

6.  Arginase activity in mitochondria--An interfering factor in nitric oxide synthase activity assays.

Authors:  Priya Venkatakrishnan; Ernesto S Nakayasu; Igor C Almeida; R T Miller
Journal:  Biochem Biophys Res Commun       Date:  2009-11-05       Impact factor: 3.575

7.  Characteristics and function of cardiac mitochondrial nitric oxide synthase.

Authors:  Elena N Dedkova; Lothar A Blatter
Journal:  J Physiol       Date:  2008-12-22       Impact factor: 5.182

8.  Enhancing Endogenous Nitric Oxide by Whole Body Periodic Acceleration Elicits Neuroprotective Effects in Dystrophic Neurons.

Authors:  Jose R Lopez; A Uryash; J Kolster; E Estève; R Zhang; J A Adams
Journal:  Mol Neurobiol       Date:  2018-03-26       Impact factor: 5.590

9.  Protective effects of antioxidative serotonin derivatives isolated from safflower against postischemic myocardial dysfunction.

Authors:  Yoshihiro Hotta; Akito Nagatsu; Wei Liu; Tatsuya Muto; Chihiro Narumiya; Xiuli Lu; Michio Yajima; Naohisa Ishikawa; Kunihiro Miyazeki; Norio Kawai; Hajime Mizukami; Jinsaku Sakakibara
Journal:  Mol Cell Biochem       Date:  2002-09       Impact factor: 3.396

Review 10.  Mitochondrial nitric oxide synthase: current concepts and controversies.

Authors:  Zsombor Lacza; Eszter Pankotai; David W Busija
Journal:  Front Biosci (Landmark Ed)       Date:  2009-01-01
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