Page 35 - 84_01
P. 35

purified rat cholinergic nerve terminals. J Neurochem                                                           Javier Gualix et al.
     1987; 48: 622-30.
                                                                  granules: a carrier-mediated transport. Neuroscience
66. Silinsky EM. On the association between transmitter           1977; 2: 159-66.
     secretion and the release of adenine nucleotides from
     mammalian motor nerve terminals. J Physiol 1975;        80. Aberer W, Kostron H, Huber E, et al. A
     247: 145-62.                                                 characterization of the nucleotide uptake of
                                                                  chromaffin granules of bovine adrenal medulla.
67. Burnstock G, Krugel U, Abbracchio MP, et al.                  Biochem J 1978; 172: 353-60.
     Purinergic signalling: from normal behaviour to
     pathological brain function. Prog Neurobiol 2011; 95:   81. Weber A, Winkler H. Specificity and mechanism of
     229-74.                                                      nucleotide uptake by adrenal chromaffin granules.
                                                                  Neuroscience 1981; 6: 2269-76.
68. Burnstock G. Physiology and pathophysiology of
     purinergic neurotransmission. Physiol Rev 2007; 87:     82. Taugner G, Heym C, Kummer W, et al.
     659-797.                                                     Nucleosidetriphosphate-ADP-phosphotransferase: a
                                                                  new enzyme in chromaffin vesicles. Biog Amines
69. Pintor J, Kowalewski HJ, Torres M, et al. Synaptic            1988; 5: 409-42.
     Vesicle Storage of Diadenosine Polyphosphates in the
     Torpedo Electric Organ. Neuroscience Research           83. Taugner G, Wunderlich I. Phosphoryl group transfer
     Communications 1992; 10: 9-15.                               by a fraction of the soluble proteins of catecholamine
                                                                  storage vesicles. J Neurochem 1981; 36: 1879-92.
70. Pintor J, Diaz-Rey MA, Torres M, et al. Presence of
     diadenosine polyphosphates--Ap4A and Ap5A--in rat       84. Gualix J, Abal M, Pintor J, et al. Presence of epsilon-
     brain synaptic terminals. Ca2+ dependent release             adenosine tetraphosphate in chromaffin granules after
     evoked by 4-aminopyridine and veratridine. Neurosci          transport of epsilon-ATP. FEBS Lett 1996; 391: 195-
     Lett 1992; 136: 141-4.                                       8.

71. Dubyak GR, el-Moatassim C. Signal transduction via       85. Van Dyke K, Robinson R, Urquilla P, et al. An
     P2-purinergic receptors for extracellular ATP and            analysis of nucleotides and catecholamines in bovine
     other nucleotides. Am J Physiol 1993; 265: C577-606.         medullary granules by anion exchange high pressure
                                                                  liquid chromatography and fluorescence. Evidence
72. Hutton JC, Penn EJ, Peshavaria M. Low-molecular-              that most of the catecholamines in chromaffin
     weight constituents of isolated insulin-secretory            granules are stored without associated ATP.
     granules. Bivalent cations, adenine nucleotides and          Pharmacology 1977; 15: 377-91.
     inorganic phosphate. Biochem J 1983; 210: 297-305.
                                                             86. Gomez-Villafuertes R, Gualix J, Miras-Portugal MT,
73. Holmsen H, Weiss HJ. Secretable storage pools in              et al. Adenosine 5'-tetraphosphate (Ap(4)), a new
     platelets. Annu Rev Med 1979; 30: 119-34.                    agonist on rat midbrain synaptic terminal P2 receptors.
                                                                  Neuropharmacology 2000; 39: 2381-90.
74. Rudnick G. Vesicular ATP transport is a hard
     (V)NUT to crack. Proc Natl Acad Sci U S A 2008;         87. Gualix J, Alvarez AM, Pintor J, et al. Studies of
     105: 5949-50.                                                chromaffin granule functioning by flow cytometry:
                                                                  transport of fluorescent epsilon-ATP and granular size
75. Winkler H, Schopf JA, Hortnagl H. Bovine adrenal              increase induced by ATP. Receptors Channels 1999;
     medulla: subcellular distribution of newly synthesised       6: 449-61.
     catecholamines, nucleotides and chromogranins.
     Naunyn Schmiedebergs Arch Pharmacol 1972; 273:          88. Gualix J, Fideu MD, Pintor J, et al. Characterization
     43-61.                                                       of diadenosine polyphosphate transport into
                                                                  chromaffin granules from adrenal medulla. FASEB J
76. Stevens P, Robinson RL, Van Dyke K, et al. Studies            1997; 11: 981-90.
     on the synthesis and release of adenosine
     triphosphate-8- 3 H in the isolated perfused cat        89. Gasnier B, Scherman D, Henry JP. Inactivation of the
     adrenal gland. J Pharmacol Exp Ther 1972; 181: 463-          catecholamine transporter during the preparation of
     71.                                                          chromaffin granule membrane 'ghosts'. FEBS Lett
                                                                  1987; 222: 215-9.
77. Stjärne L, Hedqvist R, Lagercrantz H. Catecholamine
     and adenine nucleotide material in effluent from        90. Henry JP, Sagne C, Bedet C, et al. The vesicular
     stimulated adrenal medulla and spleen: a study of the        monoamine transporter: from chromaffin granule to
     exocytosis hypothesis for hormone secretion and              brain. Neurochem Int 1998; 32: 227-46.
     neurotransmitter release. Biochem Pharmacol 1970;
     19: 1147-58.                                            91. Taugner G, Wunderlich I, John F. Distribution and
                                                                  metabolic fate of adenosine nucleotides in the
78. Peer LJ, Winkler H, Snider SR, et al. Synthesis of            membrane of storage vesicles from bovine adrenal
     nucleotides in adrenal medulla and their uptake into         medulla. Naunyn Schmiedebergs Arch Pharmacol
     chromaffin granules. Biochem Pharmacol 1976; 25:             1979; 309: 29-43.
     311-5.
                                                             92. Gruninger HA, Apps DK, Phillips JH. Adenine
79. Kostron H, Winkler H, Peer LJ, et al. Uptake of               nucleotide and phosphoenolpyruvate transport by
     adenosine triphosphate by isolated adrenal chromaffin        bovine chromaffin granule "ghosts". Neuroscience
                                                                  1983; 9: 917-24.
    36
                                                                             @Real Academia Nacional de Farmacia. Spain
   30   31   32   33   34   35   36   37   38   39   40