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Молекулы и кратковременная память
О механизмах работы циклического АМФ в целом см.: R. J. DeLange, R. G. Kemp, W. D. Riley, R. A. Cooper & amp; E. G. Krebs. Activation of skeletal muscle phosphorylase kinase by adenosine triphosphate and adenosine 3’, 5’ — monophosphate. J. Biol. Chem. 243, no. 9 (1968): 2200–2208; E. G. Krebs, Protein phosphorylation and cellular regulation, I in: Les Prix Nobel (The Nobel Prizes), ed. Nobel Foundation (Stockholm: Almquist & amp; Wiksell International, 1992); T. W. Rail & amp; E. W. Sutherland, The regulatory role of adenosine 3’, 5 ’ — phosphate. Cold SpringHarborSymp., Quant. Biol. 26 (1961) 347–354; A. E. Gilman, Nobel lecture. G Proteins and regulation of adenylyl cyclase, Biosci. Reports 15 (1995): 65–97; P. Greengard, The neurobiology of dopamine signaling, in: Les Prix Nobel (The Nobel Prizes), ed. Nobel Foundation, 262–281 (Stockholm: Almquist & amp; Wiksell International, 2000). О работе циклического АМФ в нервной системе аплизии: см. J. Н. Schwartz, V. F. Castellucci & amp; E. R. Kandel, Functioning of identified neurons and synapses in abdominal ganglion of Aplysia in absence of protein synthesis, J. Neurophysiol. 34 (1971): 939–953; H. Cedar, E. R. Kandel, and J. H. Schwartz, Cyclic adenosine monophosphate in the nervous system of Aplysia californica: Increased synthesis in response to synaptic stimulation. J. Gen. Physiol. 60 (1972): 558–569; M. Brunelli, V. Castellucci & amp; E. R. Kandel, Synaptic facilitation and behavioral sensitization in Aplysia: Possible role of serotonin and cyclic AMP. Science 194 (1976): 1178–1181; V. F. Castellucci, E. R. Kandel, J. H. Schwartz, F. D. Wilson, A. C. Nairn & amp; P. Greengard. Intracellular injection of the catalytic subunit of cyclic AMP-dependent protein kinase simulates facilitation of transmitter release underlying behavioral sensitization in Aplysia. Proc. Natl. Acad. Sci. USA 11 (1980): 7492–7496. О работе циклического АМФ в нервной системе дрозофилы см.: S. Benzer, Behavioral mutants of Drosophila isolated by counter current distribution, Proc. Natl. Acad. Sci. USA 58 (1967): 1112–1119; D. Byers, R. L. Davis & amp; J. R. Kiger Jr., Defect in cyclic AMP phosphodiesterase due to the dunce mutation of learning in Drosophila melanogaster, Nature 289 (1981): 79–81; Y. Dudai, Y. N. Jan, D. Byers, W. G. Quinn 81 S. Benzer. Dunce, a mutant of Drosophila deficient in learning. Proc. Natl. Acad. Sci. USA 73, no. 5 (1976): 1684–1688. Другие сведения, приведенные в этой главе, почерпнуты из следующих источников:
Castellucci, V. & amp; E. R. Kandel. Presynaptic facilitation as a mechanism for behavioral sensitization in Aplysia. Science 194 (1976): 1176–1178. Dale, N. & amp; E. R. Kandel. L-glutamate may be the fast excitatory transmitter of Aplysia sensory neurons. Proc. Nat. Acad. Sci. USA 90 (1993): 7163–7167. Jacob, F. The Possible and the Actual. New York: Pantheon, 1982; приведенная цитата — стр. 33–35. Jacob, F. The Statue Within. Translated by F. Philip. New York: Basic Books, 1988. Kandel, E. R. Cellular Basis of Behavior: An Introduction to Behavioral Neurobiology. San Francisco: Freeman, 1976. Kandel, E. R., M. Klein, B. Hochner, M. Shuster, S. Siegelbaum, R. Hawkins, D. Glanzman, V. F. Castellucci & amp; T. Abrams. Synaptic modulation and learning: New insights into synaptic transmission from the study of behavior. In: Synaptic Function, ed. G. M. Edelman, W. E. Gall 81 W. M. Cowan, 471–518. New York: John Wiley 81 Sons, 1987. Kistler, H. B. Jr., R. D. Hawkins, J. Koester, H. W. M. Steinbusch, E. R. Kandel 81 J. H. Schwartz. Distribution of serotonin-immunoreactive cell bodies and processes in the abdominal ganglion of mature Aplysia. J. Neurosci. 5 (1985): 72–80. Kriegstein, A., V. F. Castellucci 81 E. R. Kandel. Metamorphosis of Aplysia californica in laboratory culture. Proc. Nat. Acad. Sci. USA 71 (1974): 3654–3658. Kuffler, S. 81 J. Nicholls. From Neuron to Brain: A Cellular Approach to the Function of the Nervous System. Sunderland, Mass.: Sinauer Associates, 1976. Siegelbaum, S., J. S. Camardo & amp; E. R. Kandel. Serotonin and cAMP close single K+ channels in Aplysia sensory neurons. Nature 299 (1982): 413–417.
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