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Nitric Oxide Cycle in Mammals and the Cyclicity Principle

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Abstract

This paper continues a series of reports considering nitric oxide (NO) and its cyclic conversions in mammals. Numerous facts are summarized with the goal of developing a general concept that would allow the statement of the multiple effects of NO on various systems of living organisms in the form of a short and comprehensive law. The current state of biological aspects of NO research is analyzed in term of elucidation of possible role of these studies in the system of biological sciences. The general concept is based on a notion on cyclic conversions of NO and its metabolites. NO cycles in living organisms and nitrogen turnover in the biosphere and also the Bethe nitrogen–carbon cycle in star matter are considered. A hypothesis that the cyclic organization of processes in living organisms and the biosphere reflects the evolution of life is proposed: the development of physiological functions and metabolism are suggested to be closely related to space and evolution of the Earth as a planet of the Solar System.

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REFERENCES

  1. Furchgott, R. F., and Zawadzki, I. V. (1980) Nature, 288, 373-376.

    PubMed  Google Scholar 

  2. Ignarro, L. J., Lippton, H., Edwards, J. C., Baricos, W. H., Hyman, A. L., Kadowitz, P. J., and Gruetter, C. A. (1981) J. Pharmacol. Exp. Ther., 218, 739-749.

    PubMed  Google Scholar 

  3. Ignarro, L. J. (1990) Annu. Rev. Pharmacol. Toxicol., 30, 535-560.

    PubMed  Google Scholar 

  4. Ignarro, L. J., Buga, G. M., Wood, K. S., Byrus, R. E., and Chandhuri, G. (1987) Proc. Natl. Acad. Sci. USA, 84, 9265-9269.

    PubMed  Google Scholar 

  5. Ignarro, L. J. (1990) Eur. J. Pharmacol., 183, 1624-1625.

    Google Scholar 

  6. Murad, F., and Kimura, H. (1975) Life Sci., 17, 837-845.

    PubMed  Google Scholar 

  7. Palmer, R. M. J., Ferrige, A. G., and Moncada, S. (1987) Nature, 327, 524-526.

    Article  PubMed  Google Scholar 

  8. Moncada, S., Palmer, R. M. J., and Higgs, E. A. (1991) Pharmacol. Rev., 43, 109-142.

    PubMed  Google Scholar 

  9. Aimasheva, N. P., Manukhina, E. B., Pshennikova, M. G., Vanin, A. F., and Malyshev, I. Yu. (1998) Byul. Eksp. Biol. Med., 125, 381-384.

    Google Scholar 

  10. Andreeva, N. A., Shumatova, T. A., and Motavkin, P. A. (1999) Byul. Eksp. Biol. Med., 128, 238-240.

    Google Scholar 

  11. Bashkatova, V. G., Vytskova, G. Yu., Narkevich, V. B., Vanin, A. F., Mikoyan, V. D., Kubrina, L. N., and Raevsky, K. S. (1996) Neurochemistry (Moscow), 13, 110-115.

    Google Scholar 

  12. Bashkatova, V. G., Mikoyan, V. D., Kosacheva, E. S., Kubrina, L. N., Vanin, A. F., and Raevsky, K. S. (1996) Dokl. Ros. Akad. Nauk, 348, 119-121.

    Google Scholar 

  13. Bashkatova, V. G., and Raevsky, K. S. (1998) Biochemistry (Moscow), 63, 866-873.

    Google Scholar 

  14. Boldyrev, A. A., and Kukley, M. L. (1996) Neurochemistry (Moscow), 13, 271-278.

    Google Scholar 

  15. Borisenko, G. G., Osipov, A. N., Kazarinov, K. D., and Vladimirov, Yu. A. (1997) Biochemistry (Moscow), 62, 659-664.

    Google Scholar 

  16. Proskuryakov, S. Ya., Konoplyannikov, A. G., Ivannikov, A. I., and Skvortsov, V. G. (1999) Usp. Sovr. Biol., 119, 380-395.

    Google Scholar 

  17. Raevsky, K. S. (1997) Byul. Eksp. Biol. Med., 5, 484-490.

    Google Scholar 

  18. Raevsky, K. S., Bashkatova B. G., and Vanin, A. F. (2000) Vestnik RAMN, 4, 11-15.

    Google Scholar 

  19. Reutov, V. P., and Orlov, S. N. (1993) Fiziol. Cheloveka, 19, 124-137.

    PubMed  Google Scholar 

  20. Reutov, V. P., Sorokina, E. G., Okhotin, V. E., and Kositsyn, N. S. (1998) Cyclic Conversion of Nitric Oxide in Mammals [in Russian], Nauka, Moscow.

  21. Severina, I. S. (1998) Biochemistry (Moscow), 63, 794-801.

    Google Scholar 

  22. Turpaev, K. T. (1998) Mol. Biol. (Moscow), 32, 1-11.

    Google Scholar 

  23. Sorokina, E. G., Reutov, V. P., Pinelis, V. G., and Korshunova, T. S. (1994) Usp. Fiziol. Nauk, 25, 70-71.

    Google Scholar 

  24. Barbul, A. (1990) in Nitric Oxide from L-Arginine: a Bioregulatory System (Moncada, S., and Higgs, E. A., eds.) Excerpta Medica, Amsterdam, pp. 317-329.

    Google Scholar 

  25. Bredt, D. S., Hwang, P. M., Glatt, C. E., Lowenstein, C., Reed, R. R., and Snyder, S. H. (1991) Nature, 351, 714-718.

    Article  PubMed  Google Scholar 

  26. Busse, R., Fleming, I., and Schini, V. B. (1995) in The Role of Nitric Oxide in Physiology and Pathophysiology (Koprowski, H., and Maeda, H., eds.) Springer-Verlag, Berlin-Heidelberg, pp. 37-50.

    Google Scholar 

  27. Stoclet, J.-C., Muller, B., Andriantsitohaina, R., and Kleschyov, A. (1998) Biochemistry (Moscow), 63, 826-832.

    Google Scholar 

  28. Malyshev, I. Yu., and Manukhina, E. B. (1998) Biochemistry (Moscow), 63, 840-853.

    Google Scholar 

  29. Manukhina, E. B., Azamatov, Z. Z., and Malyshev, I. Yu. (1996) Byul. Eksp. Biol. Med., 122, 148-151.

    Google Scholar 

  30. Manukhina, E. B., Malyshev, I. Yu., and Arkhipenko, Yu. V. (2000) Vestnik RAMN, 4, 16-21.

    Google Scholar 

  31. Moncada, S. (1994) J. Hypertens., 12(Suppl. 10), S35-S39.

    Google Scholar 

  32. Moncada, S., and Higgs, E. A. (1995) FASEB J., 9, 1319-1330.

    PubMed  Google Scholar 

  33. Strukova, S. M., Chistov, I. V., Umarova, B. A., Dugina, T. N., Storozhevykh, T. P., Pinelis, V. G., and Glusa, E. (1999) Biochemistry (Moscow), 64, 658-664.

    Google Scholar 

  34. Severina, I. S., Bussygina, O. G., and Pyatakova, N. V. (2000) Vestnik RAMN, 4, 25-30.

    Google Scholar 

  35. Zenkov, N. K., Men'shikova, E. B., and Reutov, V. P. (2000) Vestnik RAMN, 4, 30-34.

    Google Scholar 

  36. Men'shikova, E. B., Zenkov, N. K., and Reutov, V. P. (2000) Biochemistry (Moscow), 65, 409-426.

    Google Scholar 

  37. Shebeko, V. I. (1999) Endothelium and Complement System [in Russian], VSMU Press, Vitebsk.

    Google Scholar 

  38. Shebeko, V. I., and Rodionov, Yu. Ya. (1993) Byul. Eksp. Biol. Med., 11, 479-480.

    Google Scholar 

  39. Vanin, A. F. (1998) Biochemistry (Moscow), 63, 782-793.

    Google Scholar 

  40. Vanin, A. F. (1995) Biochemistry (Moscow), 60, 225-230.

    Google Scholar 

  41. Vanin, A. F. (1998) Biochemistry (Moscow), 63, 731-733.

    Google Scholar 

  42. Dvorestky, D. P., Yartsev, V. N., Karachentseva, O. V., and Granstrem, M. P. (1998) Ros. Fiziol. Zh. im. I. M. Sechenova, 84, 30-38.

    Google Scholar 

  43. Vasil'eva, T. V., Michurina, T. V., Radionova, Yu. V., Kuzin, B. A., Enikolopov, G. N., and Khrushchov, N. G. (1997) Ontogenes, 28, 458-462.

    Google Scholar 

  44. Viktorov, I. V. (2000) Vestnik RAMN, 4, 5-10.

    Google Scholar 

  45. Vlasov, T. D. (1998) Ros. Fiziol. Zh. im. I. M. Sechenova, 85, 379-382.

    Google Scholar 

  46. Volgin, D. V., Marchenko, V. A., and Seredenko, M. M. (1997) Neirofiziologiya, 29, 420-430.

    Google Scholar 

  47. Granik, V. G., Ryabova, S. Yu., and Grigoriev, N. B. (1997) Usp. Khim., 66, 792-807.

    Google Scholar 

  48. Moibenko, A. A., Pavlyuchenko, V. B., Datsenko, V. V., Yuz'kov, M. Yu., and Azarov, V. I. (2000) Fiziol. Zh. (Kiev), 46, 19-32.

    Google Scholar 

  49. Motavkin, P. A., and Geltser, B. I. (1998) Clinical and Experimental Pathophysiology of Lungs [in Russian], Nauka, Moscow.

    Google Scholar 

  50. Nevzorova, V. A., Eliseeva, E. V., Zuga, M. V., Protopopova, M. Yu., and Geltser, B. I. (1998) Ter. Arkh., 3, 13-18.

    Google Scholar 

  51. Nedospasov, A. A. (1998) Biochemistry (Moscow), 63, 744-765.

    Google Scholar 

  52. Gurin, A. V. (1995) The Role of Nitric Oxide in Central Mechanisms of Thermoregulation: Abstract of Candidate's dissertation [in Russian], Anokhin Institute of Normal Physiology, Moscow.

    Google Scholar 

  53. Gurin, A. V. (1998) in The Role of Nitric Oxide in Vital Activity [in Russian], Polibig, Minsk, pp. 27-31.

    Google Scholar 

  54. Gurin, V. N. (1998) in The Role of Nitric Oxide in Vital Activity [in Russian], Polibig, Minsk, pp. 32-35.

  55. D'yakonova, T. L., and Reutov, V. P. (1994) Vopr. Med. Khim., 40, 27-30.

    Google Scholar 

  56. D'yakonova, T. L., and Reutov, V. P. (1998) Ros. Fiziol. Zh. im. I. M. Sechenova, 84, 1264-1272.

    Google Scholar 

  57. Dunai, V. I. (1998) in The Role of Nitric Oxide in Vital Activity [in Russian], Polibig, Minsk, pp. 39-40.

    Google Scholar 

  58. Duizen, I. V., Kalinichenko, S. G., Okhotin, V. E., and Motavkin, P. A. (1998) Morfologiya, 113, 47-51.

    Google Scholar 

  59. Brüne, B., Sandau, K., and von Knethen, A. (1998) Biochemistry (Moscow), 63, 817-825.

    Google Scholar 

  60. Pinelis, V. G., Sorokina, E. G., Reutov, V. P., Vinskaya, N. P., Isaev, N. K., and Viktorov, I. V. (1997) Dokl. Ros. Akad. Nauk, 352, 259-261.

    Google Scholar 

  61. Samosudova, N. V., Larionona, N. P., Reutov, V. P., and Chailakhyan, L. M. (1998) Dokl. Ros. Akad. Nauk, 361, 704-708.

    Google Scholar 

  62. Larionova, N. P., Samosudova, N. V., Reutov, V. P., and Chailakhyan, L. M. (1999) Dokl. Ros. Akad. Nauk, 369, 836-840.

    Google Scholar 

  63. Samosudova, N. V., Reutov, V. P., and Larionova, N. P. (2000) Tsitologiya, 42, 72-78.

    Google Scholar 

  64. Maeda, H., and Akaike, T. (1998) Biochemistry (Moscow), 63, 854-865.

    Google Scholar 

  65. Sakharova, A. V., and Lozhnikova, S. M. (2000) Vestnik RAMN, 4, 30-34.

    Google Scholar 

  66. Ilnitsky, A. P., Reutov, V. P., Ryzhova, N. I., Kolpakova, A. S., Deryagina, V. P., Nekrasova, E. A., and Travkin, A. G. (1997) Exp. Oncol., 19, 101-109.

    Google Scholar 

  67. Zweir, J. L., Wang, P., and Kuppusamy, P. (1995) J. Biol. Chem., 270, 304-307.

    PubMed  Google Scholar 

  68. Zweir, J. L., Wang, P., Samouilov, A., and Kuppusamy, P. (1995) Nature Med., 1, 804-809.

    PubMed  Google Scholar 

  69. Stuehr, D. J., and Marletta, M. A. (1985) Proc. Natl. Acad. Sci. USA, 82, 7738-7742.

    PubMed  Google Scholar 

  70. Soloviev, A. I., and Stefanov, A. V. (1998) Sovrem. Probl. Toksikol., 1, 35-38.

    Google Scholar 

  71. Sorokina, E. G., Reutov, V. P., Pinelis, V. G., Vinskaya, N. P., Vergun, O. V., and Khodorov, B. I. (1999) Biol. Membr. (Moscow), 16, 318-323.

    Google Scholar 

  72. Taylor, B. S., Alarcon, L. H., and Billiar, T. R. (1998) Biochemistry (Moscow), 63, 766-781.

    Google Scholar 

  73. Azhipa, Ya. I., Reutov, V. P., and Kayushkin, L. P. (1990) Fiziol. Cheloveka, 16, 131-149.

    PubMed  Google Scholar 

  74. Wink, D. A., Vodovotz, Y., Cook, J. A., Krishna, M. C., Kim, S., Coffin, D., DeGraff, W., Deluca, A. M., Liebmann, J., and Mitchell, J. B. (1998) Biochemistry (Moscow), 63, 802-809.

    Google Scholar 

  75. Vernulet, J., and van Etten, R. (1973) in Chemistry of Nitro-and Nitroso-groups [Russian translation], Vol. 2, Mir, Moscow, pp. 156-220.

    Google Scholar 

  76. Yoshimura, T. (1996) CVD Grant Round Series, Vol.3, Neuron Publishing Co., Ltd., Tokyo, pp. 1-26.

    Google Scholar 

  77. Yoshimura, T. (1996) Magn. Res. Med., 7, 9-13.

    Google Scholar 

  78. Azhipa, Ya. I., Reutov, V. P., Kayushin, L. P., and Nikishkin, E. I. (1983) Izv. Akad. Nauk SSSR. Ser. Biol., 2, 240-250.

    Google Scholar 

  79. Zinchuk, V. V., and Borisyuk, M. V. (1999) Byul. Eksp. Biol. Med., 127, 616-619.

    Google Scholar 

  80. Kalinichenko, S. G., Okhotin, V. E., and Motavkin, P. A. (1997) Tsitologiya, 39, 161-165.

    Google Scholar 

  81. Kashtanov, S. I., Zvyagintseva, M. A., Kosharskaya, I. L., Mezentseva, L. V., and Gurin, V. N. (2000) Vestnik RAMN, 4, 21-25.

    Google Scholar 

  82. Komissarova, L. Kh., Reutov, V. P., and Komissarov, A. L. (1994) Vopr. Med. Khim., 40, 25-26.

    Google Scholar 

  83. Konoplyannikov, A. G., Proskuryakov, S. Ya., Shtein, L. V., Kucherenko, A. G., Skvortsov, V. G., Ivannikov, A. I., Konoplyannikov, M. A., and Verkhovsky, Yu. G. (1999) Byul. Eksp. Biol. Med., 127, 648-650.

    Google Scholar 

  84. Kostyuk, E. P. (1998) Neirofiziologiya, 30, 151-160.

    Google Scholar 

  85. Kudryavtsev, M. E., Dmitrieva, O. N., and Kuropteva, Z. V. (1996) Izv. Ros. Akad. Nauk SSSR. Ser. Biol., 4, 453-459.

    Google Scholar 

  86. Kultchisky, S. V., and Akulich, N. V. (2000) Vestnik RAMN, 4, 41-44.

    Google Scholar 

  87. Lavrushenko, L. F., and Tsyganenko, O. I. (1996) Ukr. Biokhim. Zh., 68, 104-106.

    Google Scholar 

  88. Okhotin, V. E., and Duizenm, I. V. (1998) in The Role of Nitric Oxide in Vital Activity [in Russian], Polibig, Minsk, pp. 57-60.

  89. Cazevieille, C., Muller, A., Meynier, F., and Bonne, C. (1993) Free Rad. Biol. Med., 14, 389-395.

    PubMed  Google Scholar 

  90. Elofsson, R., Carlberg, M., Moroz, L. L., Nezlin, L. P., and Sakharov, D. A. (1993) NeuroReport, 4, 279-282.

    PubMed  Google Scholar 

  91. Polenov, S. A. (1998) Ros. Zh. Gastroenterol. Gepatol. Kolonoproktol., 1, 53-60.

    Google Scholar 

  92. Sagach, V. F., Shimanskaya, T. V., and Nadtochii, S. N. (2000) Ukr. Fiziol. Zh., 46, 33-40.

    Google Scholar 

  93. Soltanov, V. V., and Chumak, A. G. (1998) in The Role of Nitric Oxide in Vital Activity [in Russian], Polibig, Minsk, pp. 78-80.

  94. Stepuro, I. I., Chaikovskaya, N. A., Solodunov, A. A., and Artsukevich, A. N. (1997) Biochemistry (Moscow), 62, 960-966.

    Google Scholar 

  95. Chumak, A. G., and Borisov, O. L. (1998) in The Role of Nitric Oxide in Vital Activity [in Russian], Polibig, Minsk, pp. 91-94.

    Google Scholar 

  96. Shapoval, L. N., Sagach, V. F., Pobegailo, L. S., and Doloman, L. B. (1996) Neirofiziologiya, 28, 111-120.

    Google Scholar 

  97. Vigner, E. (1971) Etudes on Symmetry [Russian translation], Mir, Moscow.

    Google Scholar 

  98. Vorontsov, N. N. (1999) The Development of Evolutional Ideas in Biology [in Russian], Progress-Traditsiya, ABF, Moscow.

    Google Scholar 

  99. Karpinskaya, R. S. (1971) Philosophical Problems of Molecular Biology [in Russian], Mysl, Moscow.

    Google Scholar 

  100. Maidanov, A. S. (1993) Art of Discovery: Methodology and Logics of Scientific Creative Work [in Russian], Repro, Moscow.

    Google Scholar 

  101. Engelhardt, V. A. (1973) Philosophical Problems of Biology [in Russian], Nauka, Moscow, pp. 7-44.

    Google Scholar 

  102. Pulatova, M. K., Rikhireva, G. T., and Kuropteva, Z. V. (1989) Electron Paramagnetic Resonance in Molecular Radiobiology [in Russian], Energoatomizdat, Moscow.

    Google Scholar 

  103. Sharygin, V. L., Shishkina, L. N., Rozhdestvensky, L. N., Kormer, Z. S., and Pulatova, M. K. (1994) Izv. Ros. Akad. Nauk. Ser. Biol., 2, 254-270.

    Google Scholar 

  104. Shekhter, A. B., Kabisov, R. K., Pekshev, A. V., Kozlov, N. P., and Perov, Yu. L. (1998) Byul. Eksp. Biol. Med., 126, 210-215.

    Google Scholar 

  105. Reutov, V. P. (1995) Usp. Biol. Khim., 35, 189-228.

    Google Scholar 

  106. Ilnitsky, A. P., Reutov, V. P., Ryzhova, N. I., Kolpakova, A. S., Deryagina, V. P., Nekrasova, E. A., Savluchinskaya, L. A., and Travkin, A. G. (2000) Vestnik RAMN, 7, 11-16.

    Google Scholar 

  107. Archer, S. (1993) FASEB J., 7, 349-360.

    PubMed  Google Scholar 

  108. Ischiropoulos, H., Zhu, L., and Chen, J. (1992) Arch. Biochem. Biophys., 298, 431-437.

    PubMed  Google Scholar 

  109. Janssens, S. P., Shimouchi, A., Quertemous, T., Bloch, D. B., and Bloch, K. D. (1992) J. Biol. Chem., 267, 14519-14522.

    PubMed  Google Scholar 

  110. Maeda, H., Akaike, T., Yoshida, M., Sato, K., and Noguchi, Y. (1995) in The Role of Nitric Oxide in Physiology and Pathophysiology (Koprowski, H., and Maeda, H., eds.) Springer-Verlag, Berlin-Heidelberg, pp. 37-50.

    Google Scholar 

  111. Marletta, M. A. (1989) Trends Biochem. Sci., 14, 488-492.

    PubMed  Google Scholar 

  112. Vanin, A. F., Stukan, R. A., and Manukhina, E. B. (1996) Biochim. Biophys. Acta, 1295, 5-12.

    PubMed  Google Scholar 

  113. Efroimson, V. P. (1998) Geniality and Genetics [in Russian], Russkii Mir, Moscow.

    Google Scholar 

  114. Shnoll, S. E. (1997) Heroes and Villains of Russian Science [in Russian], Kron-Press, Moscow.

    Google Scholar 

  115. Jemmer, M. (1985) Evolution of Notions in Quantum Mechanics [in Russian], Nauka, Moscow.

    Google Scholar 

  116. Bunge, M. (1975) Philosophy of Physics [in Russian], Progress, Moscow.

    Google Scholar 

  117. Gomazkov, O. A. (1994) Dominant [in Russian], IPGM, Moscow.

    Google Scholar 

  118. Gomazkov, O. A. (1998) Biochemistry (Moscow), 63, 125-132.

    Google Scholar 

  119. Engelhardt, V. A. (1983) Cognition of Life Phenomena [in Russian], Nauka, Moscow.

    Google Scholar 

  120. Shnol, S. E. (1979) Physico-Chemical Factors of Biological Evolution [in Russian], Nauka, Moscow.

    Google Scholar 

  121. Tkachuk, V. A. (1999) Biol. Membr. (Moscow), 16, 212-229.

    Google Scholar 

  122. Apter, M. (1970) Cybernetics and Development [Russian translation], Mir, Moscow.

    Google Scholar 

  123. Wolin, M. S., Davidson, S. A., Kaminski, P. M., Fayngersh, R. P., and Mohazzab-H., K. M. (1998) Biochemistry (Moscow), 63, 810-816.

    Google Scholar 

  124. Millar, J. (1995) Med. Hypotheses, 45, 21-26.

    PubMed  Google Scholar 

  125. Orbeli, L. A. (1966) Selective of Papers “Problems of General Physiology and Pathophysiology” [in Russian], Nauka, Moscow-Leningrad, pp. 292-293.

    Google Scholar 

  126. Reutov, V. P., Azhipa, Ya. I., and Kayushin, L. P. (1983) Izv. Akad. Nauk SSSR. Ser. Biol., 3, 408-418.

    Google Scholar 

  127. Reutov, V. P. (1999) Biochemistry (Moscow), 64, 528-542.

    Google Scholar 

  128. Reutov, V. P. (1999) in Role of Neurotransmitters and Regulatory Peptides in Vital Activity [in Russian], Polibig, Minsk, pp. 185-187.

    Google Scholar 

  129. Reutov, V. P. (2000) Vestnik RAMN, 4, 35-41.

    Google Scholar 

  130. Reutov, V. P., and Dyakonova, T. L. (1999) in Role of Neurotransmitters and Regulatory Peptides in Vital Activity [in Russian], Polibig, Minsk, pp. 188-190.

    Google Scholar 

  131. Reutov, V. P., Kayushin, L. P., and Sorokina, E. G. (1994) Fiziol. Cheloveka, 20, 165-174.

    Google Scholar 

  132. Motlokh, N. N. (1991) Cancer: Payment for Evolution [in Russian], Prometei, Moscow.

    Google Scholar 

  133. Rubenchik, B. L., Glavin, A. A., Galenko, P. M., and Oleynik, I. O. (1996) Exp. Oncol., 18, 64-69.

    Google Scholar 

  134. Bernal, J. (1969) Appearance of Life [Russian translation], Mir, Moscow.

    Google Scholar 

  135. Feynman, R. (1968) Character of Physical Laws [Russian translation], Mir, Moscow.

    Google Scholar 

  136. Migdal, A. B. (1972) Ways in Unknown [in Russian], Sovetskii Pisatel, Moscow, pp. 313-322.

    Google Scholar 

  137. Selye, H. (1972) At the Level of the Whole Organism [in Russian], Nauka, Moscow.

    Google Scholar 

  138. Varshavsky, Ya. M. (1982) Preface to the book by H. Brown and J. Wolken “Liquid Crystals and Biological Structures” [in Russian], Mir, Moscow.

    Google Scholar 

  139. Grushevitskaya, T. G., and Sadokhin, A. P. (1998) Modern Concepts in Life Sciences [in Russian], shaya Shkola, Moscow.

    Google Scholar 

  140. Yulov, V. F. (1997) Modern Concepts in Life Sciences [in Russian], VGPU, Kirov.

    Google Scholar 

  141. Rutten, M. (1973) Origin of Life [Russian translation], Mir, Moscow.

    Google Scholar 

  142. Flindt, P. (1992) Biology in Numbers (Collection of tables including more than 10000 data) [Russian translation], Mir, Moscow.

    Google Scholar 

  143. Martynov, D. Ya. (1986) in About Modern Status of Global Evolutionism Idea [in Russian], Nauka, Moscow, pp. 155-157.

    Google Scholar 

  144. Nesteruk, A. V. (1994) in Global Evolutionism [in Russian], Nauka, Moscow, pp. 94-107.

    Google Scholar 

  145. Davis, P. (1985) Accidental Universe [Russian translation], Mir, Moscow.

    Google Scholar 

  146. Pullman, B., and Pullman, A. (1965) Quantum Biochemistry [in Russian], Mir, Moscow.

    Google Scholar 

  147. Davydov, A. S. (1986) Solitons in Bioenergetics [in Russian], Naukova Dumka, Kiev.

    Google Scholar 

  148. Hollicher, B. (1966) Nature in the Scientific Picture of the World [Russian translation], Progress, Moscow.

    Google Scholar 

  149. Mortenson, L. E. (1962) in The Bacteria, Vol. 3, Biosynthesis, Academic Press, N. Y., pp. 119-166.

    Google Scholar 

  150. Vernadsky, V. I. (1967) Biosphere [in Russian], Nauka, Moscow.

    Google Scholar 

  151. Vernadsky, V. I. (1989) Biosphere and Noosphere [in Russian], Nauka, Moscow.

    Google Scholar 

  152. Vernadsky, V. I. (1978) The Living Substance [in Russian], Nauka, Moscow.

    Google Scholar 

  153. Tyuryukanov, A. N., and Ferodov, V. M. (1996) N. V. Timofeev-Resovsky: Biosphere Meditation [in Russian], Nauka, Moscow, pp. 213-236.

    Google Scholar 

  154. Lvov, N. P. (1989) Molybdenum in Nitrogen Assimilation by Plants and Microorganisms [in Russian], Nauka, Moscow.

    Google Scholar 

  155. Hughes, M. (1983) Inorganic Chemistry of Biological Processes [in Russian], Mir, Moscow.

    Google Scholar 

  156. Pryanishnikov, D. N. (1945) Nitrogen in Life of Plants and Agriculture of the USSR [in Russian], AN SSSR Publishers, Moscow-Leningrad.

    Google Scholar 

  157. Tokhver, V. I. (1972) in Ecology and Physiological-Biochemical Bases of Microbiological Conversion of Nitrogen [in Russian], Tartu University Press, Tartu, pp. 34-46.

    Google Scholar 

  158. Semenov, N. N. (1934) Chain Reactions [in Russian], Goskhimizdat, Moscow.

    Google Scholar 

  159. Chrikov, N. M., and Voevodsky, V. V. (1956) Zh. Fiz. Khim., 30, 722-728.

    Google Scholar 

  160. Shugalei, I. V., Lopatina, N. I., Celinsky, I. V., and Panasyuk, S. L. (1986) Zh. Fiz. Khim., 56, 188-192.

    Google Scholar 

  161. Kanner, J. (1990) Free Rad. Biol. Med., 1, 12-13.

    Google Scholar 

  162. Vladimirov, Yu. A., and Archakov, A. I. (1972) Lipid Peroxidation in Biological Membranes [in Russian], Nauka, Moscow.

    Google Scholar 

  163. Gorren, A. C. F., and Mayer, B. (1998) Biochemistry (Moscow), 63, 734-743.

    Google Scholar 

  164. Nathan, C. (1992) FASEB J., 6, 3051-3064.

    PubMed  Google Scholar 

  165. Nathan, C. (1995) in The Role of Nitric Oxide in Physiology and Pathophysiology (Koprowski, H., and Maeda, H., eds.) Springer-Verlag, Berlin-Heidelberg, pp. 1-4.

    Google Scholar 

  166. Marletta, M. A. (1994) J. Med. Chem., 37, 1899-1907.

    PubMed  Google Scholar 

  167. Knowles, R. G., and Moncada, S. (1994) Biochem. J., 298, 249-258.

    PubMed  Google Scholar 

  168. Bredt, D. S., and Snyder, S. H. (1994) Annu. Rev. Biochem., 63, 175-195.

    PubMed  Google Scholar 

  169. Schmidt, H. H. H. W., Hofmann, H., and Ogilvie, P. (1995) in The Role of Nitric Oxide in Physiology and Pathophysiology (Koprowski, H., and Maeda, H., eds.) Springer-Verlag, Berlin-Heidelberg, pp. 75-86.

    Google Scholar 

  170. Nakane, M., Schmidt, H. H. H. W., Pollock, J. S., Forstermann, U., and Murad, F. (1993) FEBS Lett., 316, 175-180.

    PubMed  Google Scholar 

  171. Gorren, A. C. F., Schrammel, A., Schmidt, K., and Mayer, B. (1997) Biochemistry, 36, 4360-4366.

    PubMed  Google Scholar 

  172. Morse, R. H., and Chan, S. J. (1980) J. Biol. Chem., 255, 7876-7882.

    PubMed  Google Scholar 

  173. Brudvig, G. W., Stevens, T. H., and Chan, S. J. (1980) Biochemistry, 19, 5275-5285.

    PubMed  Google Scholar 

  174. Duthu, G. S., and Shertzer, H. G. (1979) Drug. Metab. Dispoit. Biol. Fate Chem., 7, 263-269.

    Google Scholar 

  175. Howard, H. G., Shertzer, H. G., and Duthu, G. S. (1979) Biochem. Pharmacol., 28, 873-879.

    PubMed  Google Scholar 

  176. Wolkenstein, M. V. (1975) Molecular Biophysics [in Russian], Nauka, Moscow.

    Google Scholar 

  177. Day, K., and Selbin, D. (1976) Theoretical Inorganic Chemistry [Russian translation], Khimiya, Moscow.

    Google Scholar 

  178. Gray, H. (1967) Electrons and Chemical Bond [in Russian], Mir, Moscow.

    Google Scholar 

  179. Langford, K., and Gray, H. (1989) Processes of Ligand Substitution [Russian translation], Mir, Moscow.

    Google Scholar 

  180. Rifkind, D. M. (1978) in Inorganic Biochemistry [Russian translation], Vol. 2, Mir, Moscow, pp. 256-338.

    Google Scholar 

  181. Shults, H., and Shirmer, R. (1982) Principles of Structural Organization of Proteins [Russian translation], Mir, Moscow.

    Google Scholar 

  182. Skulachev, V. P. (1989) Bioenergetics: Membrane Energy Transducers [in Russian], Vysshaya Shkola, Moscow.

    Google Scholar 

  183. Archakov, A. I. (1975) Microsomal Oxidation [in Russian], Nauka, Moscow.

    Google Scholar 

  184. Pratt, J. (1978) in Methods and Achievements in Bioinorganic Chemistry [Russian translation], Nauka, Moscow.

    Google Scholar 

  185. Pimentel, H., and Spratli, R. (1973) How Quantum Mechanics Explains Chemical Bond [Russian translation], Mir, Moscow.

    Google Scholar 

  186. Green, D., and Goldberg, R. (1968) Molecular Aspects of Life [Russian translation], Mir, Moscow.

    Google Scholar 

  187. Wolkenstein, M. V. (1982) Dokl. Akad. Nauk SSSR, 263, 722-725.

    Google Scholar 

  188. Wolkenstein, M. V. (1978) General Biophysics [in Russian], Nauka, Moscow.

    Google Scholar 

  189. Racker, E. (1967) Bioenergetic Mechanisms [Russian translation], Mir, Moscow.

    Google Scholar 

  190. Skulachev, V. P. (1980) Preface to the book by M. V. Gusev and G. B. GokhlernerFree Oxygen and Evolution of the Cell” [in Russian], Moscow State University Press, Moscow, pp. 3-6.

    Google Scholar 

  191. Nikitin, E. D. (1999) in Synergetics [in Russian], Moscow State University Press, Moscow, pp. 152-160.

    Google Scholar 

  192. Anokhin, P. K. (1973) in Philosophical Problems of Biology [in Russian], Nauka, Moscow, pp. 78-104.

    Google Scholar 

  193. Urmantsev, Yu. A. (1974) Symmetry in Nature and Nature of Symmetry [in Russian], Mysl, Moscow.

    Google Scholar 

  194. Urmantsev, Yu. A. (1978) Zh. Obshch. Biol., 39, 699-718.

    Google Scholar 

  195. Urmantsev, Yu. A. (1970) Botan. Zh., 55, 166-176.

    Google Scholar 

  196. Mostepanenko, A. M. (1975) Space–Time and Physical Cognition [in Russian], Atomizdat, Moscow.

    Google Scholar 

  197. Anokhin, P. K. (1980) Theory of Functional System [in Russian], Nauka, Moscow.

    Google Scholar 

  198. Sudakov, K. V. (1997) Byul. Eksp. Biol. Med., 123, 124-130.

    Google Scholar 

  199. Sudakov, K. V. (1997) Reflex and Functional System [in Russian], Novgorod University Press, Nizhnii Novgorod.

    Google Scholar 

  200. Kamshylov, M. M. (1974) Evolution of Biosphere [in Russian], Nauka, Moscow.

    Google Scholar 

  201. Kaganov, Yu. T. (1999) in Synergetics [in Russian], Vol. 2, Moscow State University Press, Moscow, pp. 168-177.

    Google Scholar 

  202. Timofeev-Resovsky, N. V. (1974) in Philosophy and Evolution Theory [in Russian], Nauka, Moscow, pp. 114-120.

    Google Scholar 

  203. Gitelson, J. I., Kovrov, B. G., Lisovsky, G. M., Okladnikov, Yu. N., Rerberg, M. S., Sidko, F. Ya., and Terskov, I. A. (1975) in Problems of Space Biology [in Russian], Vol. 28, Nauka, Moscow.

    Google Scholar 

  204. Reutov, V. P., and Sorokina, E. G. (1998) Biochemistry (Moscow), 63, 874-885.

    Google Scholar 

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Reutov, V.P. Nitric Oxide Cycle in Mammals and the Cyclicity Principle. Biochemistry (Moscow) 67, 293–311 (2002). https://doi.org/10.1023/A:1014832416073

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