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The Effect of CSP310 on Lipid Peroxidation and Respiratory Activity in Winter Wheat Mitochondria

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Abstract

Certain concentrations of the cold-shock protein (CSP310) were shown to induce systems of lipid peroxidation (POL) in winter wheat (Triticum aestivum L.) mitochondria in vitro. The process of nonenzymatic POL turned out to be the most sensitive to the presence of CSP310 in the incubation medium. The maximum induction of the enzymatic POL occurred at a higher CSP310 concentration. Wheat, maize (Zea mays L.), and elymus (Elymus sibiricus L.) proteins, which are immunochemically related to CSP310, did not manifest prooxidant properties, and, moreover, the elymus proteins had a clear-cut antioxidant effect. At the same time, these proteins uncoupled oxidation and phosphorylation to a far lesser extent than the winter rye (Secale cereale L.) CSP310. During low-temperature stress, the activation of uncoupling systems of wheat mitochondria by pyruvate, linoleic acid, and CSP310 was accompanied by an increase in oxygen consumption by seedlings and a decrease in the POL level.

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REFERENCES

  1. Richter, C., Gogvadze, V., Laffranchi, R., Schlapbach, R., Schweizer, M., Suter, M., Walter, P., and Yaffee, M., Oxidants in Mitochondria: From Physiology to Diseases, Biochim. Biophys. Acta, 1995, vol. 1271, pp. 67-74.

    Google Scholar 

  2. Skulachev, V.P., The Biochemical Mechanisms of Evolution and the Role of Oxygen, Biokhimiya, 1998, vol. 63, pp. 1570-1579.

    Google Scholar 

  3. Konstantinov, Yu.M., Lutsenko, G.N., Podsosonnyi, V.A., and Zykova, V.V., The Study of the Lipid Peroxidation in Plant Mitochondria in Relation to the Problem of Temperature Stress, Stressovye belki rastenii (Stress Proteins of Plants), Salyaev, R.K., Ed., Novosibirsk: Nauka, 1989, pp. 88-113.

    Google Scholar 

  4. McKersie, B.D.M., Chen, Y., de Beus, M., Bowley, S.R., Bowler, C., Inze, D., D'Halluin, K., and Botterman, J., Superoxide Dismutase Enhances Tolerance of Freezing Stress in Transgenic Alfalfa (Medicago sativa L.), Plant Physiol., 1993, vol. 103, pp. 1155-1163.

    Google Scholar 

  5. Zhirov, V.K., Merzlyak, M.N., and Kuznetsov, L.V., The Peroxidation of Membrane Lipids of Cold-Resistant Plants during Their Freezing Injury, Fiziol. Rast. (Moscow), 1982, vol. 29, pp. 1045-1052 (Sov. Plant Physiol., Engl. Transl.).

    Google Scholar 

  6. Kendall, E.J. and McKersie, B.D., Free Radicals and Freezing Injury to Cell Membranes of Winter Wheat, Physiol. Plant., 1989, vol. 76, pp. 86-94.

    Google Scholar 

  7. Loubaresse, M., Paulin, A., and Dereuddre, J., Effects of Freezing on Membrane Lipid Peroxidation of Rhododendron Roots (Rhododendron, cv. Demontague, Jean-Marie), C. R. Acad. Sci., 1991, vol. 313, pp. 453-459.

    Google Scholar 

  8. Skulachev, V.P., Energetika biologicheskikh membran (Energetics of Biological Membranes), Moscow: Nauka, 1989.

    Google Scholar 

  9. Jezek, P., Engstova, H., Zackova, M., Vercesi, A.E., Costa, A.D.T., Arruda, P., and Garlid, K.D., Fatty Acid Cycling Mechanism and Mitochondrial Uncoupling Proteins, Biochim. Biophys. Acta, 1998, vol. 1365, pp. 319-327.

    Google Scholar 

  10. Palou, A., Pico, C., Bonet, M.L., and Oliver, P., The Uncoupling Protein, Thermogenin, Int. J. Biochem. Cell Biol., 1998, vol. 30, pp. 7-11.

    Google Scholar 

  11. Kagan, V.E., Sibeldina, L.A., Ritov, V.V., Kobelev, V.S., Kozlov, Yu.P., and Kayushin, L.P., The Study of the Protein—Lipid Interactions in the Sarcoplasmic Reticulum by the Method of High Resolution Proton Magnetic Resonance, Dokl. Akad. Nauk SSSR, 1975, vol. 222, pp. 1223-1226.

    Google Scholar 

  12. Skulachev, V.P., A Decrease in the Intracellular O2 Concentration as the Specific Function of Cell Respiratory Systems, Biokhimiya, 1994, vol. 59, pp. 1910-1912.

    Google Scholar 

  13. Kolesnichenko, A.V., Borovskii, G.B., Voinikov, V.K., Misharin, S.I., and Antipina, A.I., Antigen from Winter Rye Accumulated under Low Temperature, Fiziol. Rast. (Moscow), 1996, vol. 43, pp. 894-899 (Russ. J. Plant Physiol., Engl. Transl.).

    Google Scholar 

  14. Misharin, S.I., Antipina, A.I., and Voinikov, V.K., The Effect of Cold Shock on Antigen Composition of Winter Rye and Wheat, Fiziol. Biokhim. Kul't. Rast., 1997, vol. 29, pp. 215-219.

    Google Scholar 

  15. Kolesnichenko, A.V., Voinikov, V.K., Borovskii, G.B., and Dorofeev, N.V., The Content of 310-kD Stress Protein in Winter Wheat Seedlings under Hypothermia and Water Deficiency, Fiziol. Biokhim. Kul't. Rast., 1999, vol. 31, pp. 145-149.

    Google Scholar 

  16. Pobezhimova, T.P., Kolesnichenko, A.V., Voinikov, V.K., Varakina, N.N., and Borovskii, G.B., Hypothermia-Induced Stress Protein of 310 kD Affects the Energetic Activity of Plant Mitochondria, Dokl. Akad. Nauk, 1996, vol. 350, pp. 715-718.

    Google Scholar 

  17. Voinikov, V., Pobezhimova, T., Kolesnichenko, A., Varakina, N., and Borovskii, G., Stress Protein 310 kD Affects the Energetic Activity of Plant Mitochondria under Hypothermia, J. Therm. Biol., 1998, vol. 23, pp. 1-4.

    Google Scholar 

  18. Voinikov, V.K., Grabelnykh, O.I., Kolesnichenko, A.V., and Pobezhimova, T.P., Cold-Shock 310-kD Protein Uncouples Oxidative Phosphorylation in Plant Mitochondria, Fiziol. Rast. (Moscow), 2001, vol. 48, pp. 89-94 (Russ. J. Plant Physiol., Engl. Transl.).

    Google Scholar 

  19. Kolesnichenko, A.V., Grabelnych, O.I., Tourchaninova, V.V., Zykova, V.V., Koroleva, N.A., Pobezhimova, T.P., and Voinikov, V.K., An Influence of Stress Protein CSP310 and Antiserum against This Protein on Lipid Peroxidation in Cereal Mitochondria, J. Immunoassay Immunochem., 2001, vol. 22, pp. 113-126.

    Google Scholar 

  20. Pobezhimova, T.P., Grabelnych, O.I., Kolesnichenko, A.V., and Voinikov, V.K., The Comparison of Uncoupling Activity of Constituently Synthesized and Stress Forms of Winter Rye Stress Uncoupling Protein CSP310, J. Therm. Biol., 2001, vol. 26, pp. 323-327.

    Google Scholar 

  21. Zykova, V.V., Grabelnych, O.I., Antipina, A.I., Koroleva, N.A., Vladimirova, S.V., Kolesnichenko, A.V., Pobezhimova, T.P., and Voinikov, V.K., Plant Stress-Related Uncoupling Protein CSP310 Caused Lipid Peroxidation in Winter Wheat Mitochondria under Chilling Stress, J. Therm. Biol., 2000, vol. 25, pp. 323-327.

    Google Scholar 

  22. Zykova, V.V., Grabelnykh, O.I., Vladimirova, S.V., Koroleva, N.A., Kolesnichenko, A.V., and Voinikov, V.K., Stress Uncoupling Protein CSP310 Induces Lipid Peroxidation in Winter Wheat Mitochondria under Hypothermia, Dokl. Akad. Nauk, 2000, vol. 372, pp. 562-564.

    Google Scholar 

  23. Kowaltowski, A.J., Costa, A.D.T., and Vercesi, A.E., Activation of the Potato Plant Uncoupling Mitochondrial Protein Inhibits Reactive Oxygen Species Generation by the Respiratory Chain, FEBS Lett., 1999, vol. 425, pp. 213-216.

    Google Scholar 

  24. Korshunov, S.S., Korkina, O.V., Ruuge, E.K., Skulachev, V.P., and Starkov, A.A., Fatty Acids as Natural Uncouplers Preventing Generation of O 2- and H2O2 by Mitochondria in the Resting State, FEBS Lett., 1999, vol. 435, pp. 215-218.

    Google Scholar 

  25. Kolesnichenko, A.V., Ostroumova, E.A., Zykova, V.V., and Voinikov, V.K., The Comparison of Proteins with Immunochemical Affinity to Stress Protein 310 kD in Cytoplasmatic Proteins of Winter Rye, Winter Wheat, Elymus, and Maize, J. Therm. Biol., 1999, vol. 24, pp. 211-215.

    Google Scholar 

  26. Kolesnichenko, A., Zykova, V., and Voinikov, V., A Comparison of the Immunochemical Affinity of Cytoplasmic, Mitochondrial and Nuclear Proteins of Winter Rye (Secale cereale L.) to a 310 kD Stress Protein in Control Plants and during Exposure to Cold Stress, J. Therm. Biol., 2000, vol. 25, pp. 203-209.

    Google Scholar 

  27. Voinikov, V.K., Konstantinov, Yu.M., and Negruk, V.I., Geneticheskie funktsii mitokhondrii rastenii (Genetic Functions of Plant Mitochondria), Novosibirsk: Nauka, 1991.

    Google Scholar 

  28. Douce, R., Mitochondria in Higher Plants: Structure, Function and Biogenesis, London: Academic, 1985.

    Google Scholar 

  29. Davy de Virville, J., Aaron, I., Alin, M.F., and Moreau, F., Isolation and Properties of Mitochondria from Arabidopsis thaliana Cell Suspension Cultures, Plant Physiol. Biochem., 1994, vol. 32, pp. 159-166.

    Google Scholar 

  30. Guillot-Salomon, T., Remy, R., Cantrel, C., Demandre, C., and Moreau, F., Phospholipids and Polypeptides in the Outer Membrane of Maize Mitochondria, Phytochemistry, 1997, vol. 44, pp. 29-43.

    Google Scholar 

  31. Stal'naya, I.D., Method for the Determination of Diene Conjugation of Polyenoic Fatty Acids, Sovremennye metody v biokhimii (Contemporary Methods in Biochemistry), Orekhovich, V.N., Ed., Moscow: Meditsyna, 1977, pp. 63-64.

    Google Scholar 

  32. Konstantinov, Yu.M., Lutsenko, G.N., Podsosonnyi, V.A., and Zykova, V.V., Possible Mechanism of DNA Transcription Disturbance Induced by the Peroxidation of Membrane Lipids in Maize Mitochondria, Fiziol. Biokhim. Kul't. Rast., 1989, vol. 21, pp. 483-487.

    Google Scholar 

  33. Estabrook, R.W., Mitochondrial Respiratory Control and the Polarographic Measurement of ADP: O Ratio, Methods Enzymol., 1967, vol. 10, pp. 41-47.

    Google Scholar 

  34. Lowry, O.H., Rosebrough, N.J., Farr, A.L., and Randall, R.J., Protein Measurement with the Folin Phenol Reagent, J. Biol. Chem., 1957, vol. 193, pp. 265-275.

    Google Scholar 

  35. Pobezhimova, T.P. and Voinikov, V.K., Biochemical and Physiological Aspects of Ubiquinone Functioning, Biol. Membr. (Moscow), 1999, vol. 16, pp. 485-490.

    Google Scholar 

  36. Richter, Ch. and Frei, B., Ca2+ Release from Mitochondria Induced by Prooxidants, Free Radical Biol. Med., 1988, vol. 4, pp. 365-375.

    Google Scholar 

  37. Richter, Ch. and Schlegel, J., Mitochondrial Calcium Release Induced by Prooxidants, Toxicol. Lett., 1993, vol. 67, pp. 119-127.

    Google Scholar 

  38. Skulachev, V.P., Reactive Forms of Oxygen and Their Possible Role in Defense against Viral Infections, Biokhimiya, 1998, vol. 63, pp. 1691-1694.

    Google Scholar 

  39. McIntosh, I., Molecular Biology of the Alternative Oxidase, Plant Physiol., 1994, vol. 105, pp. 781-786.

    Google Scholar 

  40. Sluse, F.E., Almeida, A.M., Jarmuszkiewicz, W., and Vercesi, A.E., Free Fatty Acids Regulate the Uncoupling Protein and Alternative Oxidase Activities in Plant Mitochondria, FEBS Lett., 1998, vol. 433, pp. 237-240.

    Google Scholar 

  41. Sluse, F.E. and Jarmuszkiewicz, W., Activity and Functional Interaction of Alternative Oxidase and Uncoupling Protein in Mitochondria from Tomato Fruit, Brazil. J. Med. Biol. Res., 2000, vol. 33, pp. 259-268.

    Google Scholar 

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Zykova, V.V., Grabelnykh, O.I., Tourchaninova, V.V. et al. The Effect of CSP310 on Lipid Peroxidation and Respiratory Activity in Winter Wheat Mitochondria. Russian Journal of Plant Physiology 49, 628–634 (2002). https://doi.org/10.1023/A:1020284717486

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