882
Views
20
CrossRef citations to date
0
Altmetric
Research Article

Mitochondrial ATP synthase inhibition and nitric oxide are involved in muscle weakness that occurs in acute exposure of rats to monocrotophos

, , &
Pages 239-245 | Received 21 Jul 2008, Accepted 06 Sep 2008, Published online: 01 Mar 2009

References

  • Bernatova, I., Kopincova, J., Puzserova, A., Janega, P., and Babal, P. 2007. Chronic low dose L-NAME treatment increases nitric oxide production and vasorelaxation in normotensive rats. Physiol. Res. 56(Suppl 2):S17–S24.
  • Brookes, P. S., Pinner, A., Ramachandran, A., Coward, L., Barnes, S., Kim, H., and Darley-Usmar, V. M. 2002. High throughput two-dimensional blue-native electrophoresis: a tool for functional proteomics of mitochondria and signaling complexes. Proteomics 2:969–977.
  • Chang, A. Y., Chan, J. Y., Kao, F. J., Huang, C. M., and Chan, S. H. 2001. Engagement of inducible nitric oxide synthase at the rostral ventrolateral medulla during mevinphos intoxication in the rat. J. Biomed. Sci. 8:475–483.
  • Damodaran, T. V., Patel, A. G., Greenfield, S. T., Dressman, H. K., Lin, S. M., and Abou-Donia, M. B. 2006. Gene expression profiles of the rat brain both immediately and 3 months following acute sarin exposure. Biochem. Pharmacol. 7:497–520.
  • Darley-Usmar, V. 1987. The molecular aetiology of human mitochondrial myopathies. Biochem. Soc. Trans. 1:102–103.
  • De Bleecker, J., Willems, J., De Reuck, J., Santens, P., and Lison, D. 1991. Histological and histochemical study of paraoxon myopathy in the rat. Acta Neurol. Belg. 9:255–270.
  • Dedkova, E. N., and Blatter, L. A. 2005. Modulation of mitochondrial Ca2+ by nitric oxide in cultured bovine vascular endothelial cells. Am. J. Physiol. Cell Physiol. 289:C836–C845.
  • DiMauro, S., and Gurgel-Giannetti, J. 2005. The expanding phenotype of mitochondrial myopathy. Curr. Opin. Neurol. 18:538–542.
  • Eddleston, M., and Phillips, M. R. 2004. Self poisoning with pesticides. Br. Med. J. 328:42–44.
  • Ellman, G. L., Courtney, K. D., AndresJr., V. and Feather-Stone, and R. M. 1961. A new and rapid colorimetric determination of acetylcholinesterase activity. Biochem. Pharmacol. 7:88–95.
  • Gupta, R. C., Milatovic, D., and Dettbarn, W. D. 2002. Involvement of nitric oxide in myotoxicity produced by diisopropylphosphorofluoridate (DFP)-induced muscle hyperactivity. Arch. Toxicol. 76:715–726.
  • Jaffrey, S. R., Erdjument-Bromage, H., Ferris, C. D., Tempst, P., and Snyder, S. H. 2001. Protein S-nitrosylation: a physiological signal for neuronal nitric oxide. Nature Cell Biol. 3:193–197.
  • Jeyarasasingam, G., Yeluashvili, M., and Quik, M. 2000. Nitric oxide is involved in acetylcholinesterase inhibitor-induced myopathy in rats. J. Pharmacol. Exp. Ther. 295:314–320.
  • John, M., Oommen, A., and Zachariah, A. 2003. Muscle injury in organophosphorous poisoning and its role in the development of intermediate syndrome. Neurotoxicology 24:43–53.
  • Laemmli, U. 1970. Cleavage of structural proteins during the assembly of the head of bacteriphage T4. Nature 227:680–685.
  • Leonard, J. P., and Salpeter, M. M. 1979. Agonist induced myopathy at the neuromuscular junction is mediated by calcium. J. Cell Biol. 82:811–819.
  • Lowry, O. H., Rosenbrough, N. H., Farr, A. L., and Randall, R. J. 1951. Protein measurement with the Folin phenol reagent. J. Biol. Chem. 193:265–275.
  • Madesh, M., Ramachandran, A., and Balasubramanian, K. A. 1999. Nitric oxide prevents anoxia-induced apoptosis in colonic HT29 cells. Arch. Biochem. Biophys. 366:240–248.
  • Manhande, S. N., and Chopde, C. 1995. Neurobehavioral effect of acute monocrotophos administration in rats and mice. Indian J. Pharmacol. 27:245–249.
  • Moreau, B., Nelson, C., and Parekh, A. B. 2006. Biphasic regulation of mitochondrial Ca2+ uptake by cytosolic Ca2+ concentration. Curr. Biol. 16:1672–1677.
  • Pennington, R. J. 1961. Biochemistry of dystrophic muscle. Mitochondrial succinate-tetrazolium reductase and adenosine triphosphatase. Biochem. J. 80:649–654.
  • Samuel, J., Thomas, K., Jeyaseelan, L., Peter, J. V., and Cherian, A. M. 1995. Incidence of intermediate syndrome in organophosphorus poisoning. J. Ass. Physicians India 43:321–323.
  • Sarnat, H. B., and Marin-Garcia, J. 2005. Pathology of mitochondrial encephalomyopathies. Can. J. Neurol. Sci. 32:152–166.
  • Sastry, K. V., Moudgal, R. P., Mohan, J., Tyagi, J. S., and Rao, G. S. 2002. Spectrophotometric determination of serum nitrite and nitrate by copper-cadmium alloy. Anal. Biochem. 306:79–82.
  • Scarpa, A. 1979. Measurements of cation transport with metallochromic indicators. Methods Enzymol. 56:301–338.
  • Schagger, H., and von Jagow, G. 1991. Blue Native Electrophoresis for isolation of membrane protein complexes in enzymatically active form. Anal. Biochem. 199:223–231.
  • Schagger, H., Cramer, W. A., and von Jagow, G. 1994. Analysis of molecular masses and oligomeric states of protein complexes by blue native electrophoresis and isolation of membrane protein complexes by two-dimensional native electrophoresis. Anal. Biochem. 217:220–230.
  • Schild, L., Reinheckel, T., Reiser, M., Horn, T. F. W., Wolf, G., and Augustin, W. 2003. Nitric oxide produced in rat liver mitochondria causes oxidative stress and impairment of respiration after transient hypoxia. FASEB J. 17:2194–2201.
  • Smith, M. A., and Reid, M. B. 2006. Redox modulation of contractile function in respiratory and limb skeletal muscle. Respir. Physiol. Neurobiol. 151:229–241.
  • Soper, J. W., and Pedersen, P. L. 1979. Isolation of an oligomycin-sensitive ATPase complex from rat liver mitochondria. Methods Enzymol. 55:328–333.
  • Takeyama, N., Matsuo, N., and Tanaka, T. 1993. Oxidative damage to mitochondria is mediated by the Ca (2+)-dependent inner-membrane permeability transition. Biochem. J. 294:719–725.
  • Thomas, S., Ramachandran, A., Susama, P., and Balasubramanian, K. A. 2001. Nitric oxide prevents intestinal mitochondrial dysfunction induced by surgical stress. Br. J. Surgery 88:393–399.
  • Towbin, H., Staehelin, T., and Gordon, J. 1979. Electrophoretic transfer of proteins from polyacrylamide gels to nitrocellulose sheets: procedure and some applications. Proc. Natl. Acad. Sci. USA 76:4350–4354.
  • Wilkinson, J. H., and Robinson, J. M. 1974. Effect of ATP on release of intracellular enzymes from damaged cells. Nature 249:662–663.
  • Yen, D. H., Chan, J. Y., Tseng, H. P., Huang, C. I., Lee, C. H., Chan, S. H., and Chang, A. Y. 2004. Depression of mitochondrial respiratory enzyme activity in rostral ventrolateral medulla during acute mevinphos intoxication in the rat. Shock 21:358–363.