Central melatonin receptors: Implications for a mode of action (original) (raw)

Literature

  1. Arendt, J., Role of the pineal gland and melatonin in seasonal reproductive function in mammals, in: Oxford Reviews of Reproductive Biology, vol. 8, p. 266–320. Ed. G. R. Clarke. Clarendon Press, Oxford 1986.
    Google Scholar
  2. Arendt, J., Symons, A. M., and Laud, C., Pineal function in the sheep: evidence for a possible mechanism mediating seasonal reproductive activity. Experientia_37_ (1981) 584–586.
    Article CAS PubMed Google Scholar
  3. Armstrong, S. M., Cassone, V. M., Chesworth, M. G., Redman, J. R., and Short, R. V., Synchronization of mammalian circadian rhythms by melatonin. J. neural Transm. [Suppl.]21 (1986) 375–394.
    CAS Google Scholar
  4. Berria, M., DeSantis, M., and Mead, R. A., Effects of suprachiasmatic nuclear ablation and melatonin on delayed implantation in the spotted skunk. Neuroendocrinology_48_ (1988) 371–375.
    Article CAS PubMed Google Scholar
  5. Bittman, E. L., and Karsch, F. J., Nightly duration of pineal melatonin secretion determining the reproductive response to inhibitory daylength in the ewe. Biol. Reprod.30 (1984) 585–593.
    Article CAS PubMed Google Scholar
  6. Bittman, E. L., Goldman, B. D., and Zucker, I., Testicular responses to melatonin are altered by lesions of the suprachiasmatic nuclei in golden hamster. Biol. Reprod.21 (1979) 647–656.
    Article CAS PubMed Google Scholar
  7. Bittman, E. L., Dempsey, R. L., and Karsch, F. J., Pineal melatonin secretion drives the reproductive response to daylength in the ewe. Endocrinology_113_ (1983) 2276–2288.
    Article CAS PubMed Google Scholar
  8. Bubenik, G. A., Brown, G. M., Uhlir, G., and Grota, L. G., Immunohistological localization of N-acetylindolealkylamines in pineal gland, retina and cerebellum. Brain Res.81 (1974) 223–242.
    Article Google Scholar
  9. Cahil, G. M., and Besharse, J. C., Retinal melatonin is metabolized within the eye of_Xenopus laevis_. Proc. natl Acad. Sci.86 (1989) 1098–1102.
    Article Google Scholar
  10. Cardinali, D. P., Vacas, M. I., and Boyer, E. E., Specific binding of melatonin in bovine brain. Endocrinology_105_ (1979) 437–441.
    Article CAS PubMed Google Scholar
  11. Carter, D. S., and Goldman, B. D., Antigonadal effects of timed melatonin infusion in pinealectomized male Djungarian hamsters (Phodopus sungorus sungorus): Duration is the critical parameter. Endocrinology_113_ (1983) 1261–1267.
    Article CAS PubMed Google Scholar
  12. Cassone, V. M., Roberts, M. H., and Moore, R. Y., Melatonin inhibits metabolic activity in the rat suprachiasmatic nuclei. Neurosci. Lett.81 (1987) 29–34.
    Article CAS PubMed Google Scholar
  13. Cohen M., Roselle, D., Chabner, B., Schmidt, T. J., and Lippman, M., Evidence for a cytoplasmic melatonin receptor. Nature_274_ (1978) 894–895.
    Article CAS PubMed Google Scholar
  14. Delmann, M.-D., Stoeckel, M.-E., Hindelang-Gertner, C., Porte, A., and Stutinsky, F., A comparative ultrastructural study of the pars tuberalis of various mammals, the chicken and the newt. Cell Tissue Res.148 (1974) 313–329.
    Article Google Scholar
  15. Dowell, S. F., and Lynch, G. R., Duration of the melatonin pulse in the hypothelamus controls testicular function in pinealectomized mice (Peromyscus leucopus). Biol. Reprod.36 (1987) 1095–1101.
    Article CAS PubMed Google Scholar
  16. Dubocovich, M. L., Characterization of a retinal melatonin receptor. J. Pharmac. exp. Ther.234 (1985) 395–401.
    CAS Google Scholar
  17. Dubocovich, M. L., Luzindole (N-0774) antagonized the melatonin-induced inhibition of3H-dopamine from rabbit retina. Soc. Neurosci. Abstr. 2904 (1987) p. 1038.
    Google Scholar
  18. Dubocovich, M. L., Pharmacology and function of melatonin receptors. FASEB J.2 (1988) 2765–2773.
    Article CAS PubMed Google Scholar
  19. Dubocovich, M. L., and Takahashi, J. S., Use of 2-[125I]-iodomelatonin to characterize melatonin binding sites in chicken retina. Proc. natl Acad. Sci. USA_84_ (1987) 3916–3920.
    Article CAS PubMed PubMed Central Google Scholar
  20. Duncan, M. J., Takahashi, J. S., and Dubocovich, M. L., 2-[125I]-iodomelatonin binding sites in hamster brain membranes: pharmacological characteristics and regional distribution.112 (1988) 1825–1833.
  21. Ellis, G. B., and Turek, F. W., Photoperiodic regulation of serum luteinizing hormone and follicle-stimulating hormone in castrated and castrated-adrenalectomized male hamsters. Endocrinology_106_ (1980) 1338–1344.
    Article CAS PubMed Google Scholar
  22. English, J., and Arendt, J., Characterization and circadian rhythmicity of a melatonin binding site in the rat hypothalamus. J. Reprot. Fert. Abstract Series No. 1 (1988) Abst. 6.
  23. Glass, J. D., and Lynch, G. R., Melatonin: identification of sites of antigonadal action in mouse brain. Science_214_ (1981) 821–823.
    Article CAS PubMed Google Scholar
  24. Glass, J. D., and Lynch, G. R., Evidence for a brain site of melatonin action in the white-footed mouse_Peromyscus leucopus_. Neuroendocrinology_34_ (1982) 1–6.
    Article CAS PubMed Google Scholar
  25. Goldman, B. D., Darrow, J. M., and Yogev, L., Effects of timed melatonin infusions on reproductive development in the Djungarian hamster (Phodopus sungorus). Endocrinology_114_ (1984) 2074–2083.
    Article CAS PubMed Google Scholar
  26. Gross, D. S., The mammalian hypophyseal pars tuberalis: a comparative immunocytochemical study. Gen. comp. Endocr.56 (1984) 283–298.
    Article CAS PubMed Google Scholar
  27. Hastings, M. H., Walker, A. P., Roberts, A. C., and Herbert, J., Intrahypothalamic melatonin blocks photoperiodic responsiveness in the male Syrian hamster. Neuroscience_24_ (1988) 987–991.
    Article CAS PubMed Google Scholar
  28. Heward, C. G., and Hadley, M. E., Structure-activity relationships of melatonin and related indoleamines. Life Sci.17 (1975) 1167–1178.
    Article CAS PubMed Google Scholar
  29. Illnerova, H., Hoffman, K., and Vanecek, J., Adjustment of pineal melatonin and N-acetyltransferase rhythms to change from long to short photoperiod in the Djungarian hamster (Phodopus sungorus). Neuroendocrinology_38_ (1984) 226–231.
    Article CAS PubMed Google Scholar
  30. Jennes, L., and Stumpf, W. E., LH-RH systems in the brain of the golden hamster. Cell Tissue Res.209 (1980) 239–256.
    Article CAS PubMed Google Scholar
  31. Jones, E. G., The Thalamus. Plenum Press, New York 1985.
    Chapter Google Scholar
  32. Joss, J. M. P., Autoradiographic localisation of sites of uptake of [3H]-melatonin in the brain of the lizard and a lamprey in: Pineal Function, p. 223–234. Eds C. D. Mathews and R. F. Seamark. Elsevier/North Holland Biomedical Press, Amsterdam 1981.
    Google Scholar
  33. Karsch, F. J., Bittman, E. L., Foster, D. L., Goodman, R. L., Legan, S. J., and Robinson, J. E., Neuroendocrine basis of seasonal reproduction. Rec. Prog. Horm. Res.40 (1984) 185–232.
    CAS PubMed Google Scholar
  34. Karsch, F. J., Malpaux, B., Wayne, N. L., and Robinson, J. E., Characteristics of the melatonin signal that provide the photoperiodic code for timing seasonal reproduction in the ewe. Reprod. Nutr. Develop.28 2B (1988) 459–472.
    Article CAS Google Scholar
  35. Kennaway, D. J., Sanford, L. M., Godfrey, B., and Friesen, H. G., Patterns of progesterone, melatonin and prolactin secretion in ewes maintained in four different photoperiods. J. Endocr.97 (1983) 220–242.
    Article Google Scholar
  36. Kuhar, M. G., Receptor localization with the microscope, in: Neurotransmitter Receptor Binding, p. 153–176. Ed. H. J. Yamamura. Raven Press, New York 1985.
    Google Scholar
  37. Laitinen, J. T., Castre, E., Vakkuri, O., and Saavedra, J. M., Diurnal rhythm of melatonin binding in the rat suprachiasmatic nucleus. Endocrinology_124_ (1989) 1585–1587.
    Article CAS PubMed Google Scholar
  38. Laudon, M., and Zisapel, N., Characterization of central melatonin receptors using [125I]-melatonin. FEBS Lett.197 (1986) 9–12.
    Article CAS PubMed Google Scholar
  39. Laudon, M., and Zisapel, N., Impact of circulating estradiol on melatonin binding sites in discrete areas of the female rat brain. Brain Res.402 (1987) 146–150.
    Article CAS PubMed Google Scholar
  40. Laudon, M., Yaron, Z., and Zisapel, N., N-(3,5-dinitrophenyl)-5-methoxy-tryptamine, a novel melatonin antagonist: effects on sexual maturation of the male and female rat and on oestrous cycles of the female rat. J. Endocr.116 (1988) 43–53.
    Article CAS PubMed Google Scholar
  41. Lincoln, G. A., and Kelly, R. W., Test of a putative melatonin antagonist in the ram. J. Reprod. Fert.1 (1988) abst. 27.
    Google Scholar
  42. Lincoln, G. A., and Short, R. V., Seasonal breeding: Nature's contraceptive. Rec. Prog. Horm. Res.36 (1980) 1–52.
    CAS PubMed Google Scholar
  43. Maywood, E., Bonnefond, C., Herbert, J., and Hastings, M., Effect of hypothalamic lesions on the gonadal response to programmed melatonin infusions in the Syrian hamster. J. Endocr.121 (suppl.) (1989) abst. 158.
    Google Scholar
  44. McMillen, I. C., and Nowak, R., Maternal pinealectomy abolishes the diurnal rhythm in plasma melatonin concentrations in the fetal sheep. J. Reprod. Fert.1 (1988) abstr. 28.
    Google Scholar
  45. Messenger, E. A., and Warner, A. E., The action of melatonin on single amphibian pigment cells in tissue culture. Br. J. Pharmac.61 (1977) 607–614.
    Article CAS Google Scholar
  46. Moore, R. Y., The suprachiasmatic nucleus and the organisation of a circadian system. TINS Nov. (1982) 404–407.
  47. Morgan, P. J., Williams, L. M., Davidson, G., Lawson, W., and Howell, E., Melatonin receptors on ovine pars tuberalis: Characterization and autoradiographical localization. J. Neuroendocr.1 (1989) 1–4.
    Article CAS Google Scholar
  48. Munson, P. J., LIGAND: A computerized analysis of ligand binding data. Meth. Enzymol.92 (1984) 543–576.
    Article Google Scholar
  49. Niles, L. P., Pickering, D. S., and Sayer, B. G., HPLC-purified 2-[125I]-iodomelatonin labels multiple binding sites in hamster brain. Biochem. biophys. Res. Commun.147 (1987) 949–956.
    Article CAS PubMed Google Scholar
  50. Niles, L. P., Wong, Y.-W., Mishra, R. K., and Brown, G. M., Melatonin receptors in brain. Eur. J. Pharmac.55 (1979) 219–220.
    Article CAS Google Scholar
  51. Redman, G., Armstrong, S., and Ng, K. T., Free-running activity rhythms in the rat: Entrainment by melatonin. Science_219_ (1983) 1089–1091.
    Article CAS PubMed Google Scholar
  52. Reiter, R. J., The pineal and its hormones in the control of reproduction in mammals, Endocr. Rev.1 (1980) 109–131.
    Article CAS PubMed Google Scholar
  53. Reppert, S. M., Weaver, D. R., Rivkees, S. A., and Stopa, E. G., Putative melatonin receptors in a human biological clock. Science_242_ (1988) 78–80.
    Article CAS PubMed Google Scholar
  54. Robbins, T. W., Hunger, in: Neuroendocrinology, p. 252–301. Eds S. L. Lightman and B. G. Everitt. Blackwell Scientific Publications, Oxford 1986.
    Google Scholar
  55. Roberts, M. H., Cassone, V. M., and Moore R. Y., Effects of melatonin on suprachiasmatic nucleus metabolism in rats. Soc. Neurosci. Abstr.2903 (1987) p. 1038.
    Google Scholar
  56. Roberts, A. C., Martensz, N. D., Hastings, M. H., and Herbert, J. Changes in photoperiod alter the daily rhythms of pineal melatonin content and hypothalamic β-endorphin contents and the luteinizing hormone response to naloxone in the male Syrian hamster. Endocrinology_117_ (1985) 141–148.
    Article CAS PubMed Google Scholar
  57. Robinson, J. E., and Karsch, F. J., Timing the breeding season of the ewe: what is the role of daylength. Reprod. Nutr. Develop.28 (1988) 387–398.
    Article Google Scholar
  58. Rollag, M. D., O'Callaghan, P. L., and Niswender, G. D., Serum melatonin concentrations during different stages of the animal reproductive cycle in ewes. Biol. Reprod.18 (1978) 279–285.
    Article CAS PubMed Google Scholar
  59. Scatchard, G., The atractions of proteins for small molecules and ions. Ann. NY Acad. Sci.51 (1959) 660–672.
    Article Google Scholar
  60. Stoeckel, M.-E., and Porte, A., Fine structure and development of the pars tuberalis in mammals, in: Ultrastructure of Endocrine Cells and Tissues, p. 29–39. Ed. P. M. Motta. Martinus Nijhoff, Boston 1984.
    Chapter Google Scholar
  61. Sugden, D., Melatonin analogues induced pigment granule condensation in isolated_Xenopus laevis_ melanophores in tissue culture. J. Endocr.120 (1989) R1-R3.
    Article CAS PubMed Google Scholar
  62. Vakkuri, O., Leppaluoto, J., and Vuolteenaho, O., Development and validation of a melatonin radioimmunoassay using radioiodinated melatonin tracer. Acta endocr.106 (1984) 152–157.
    CAS PubMed Google Scholar
  63. Vakkuri, O., Lamsa E., Rahkamaa, E., Ruotsalainen, H., and Leppaluoto, J., Iodinated melatonin: preparation and characterization of the molecular structure by mass or1H NMR spectroscopy. Analyt. Biochem.142 (1984) 284–289.
    Article CAS PubMed Google Scholar
  64. Vanecek, J., Melatonin binding sites. J. Neurochem.51 (1988) 1436–1440.
    Article CAS PubMed Google Scholar
  65. Vanecek, J., The melatonin receptors in rat ontogenesis. Neuroendocrinology_48_ (1988) 201–203.
    Article CAS PubMed Google Scholar
  66. Vanecek, J., and Jansky, L., Short days induce changes in specific melatonin binding in hamster median eminence and anterior pituitary. Brain Res.477 (1989) 387–390.
    Article CAS PubMed Google Scholar
  67. Vanecek, J., Pavlik, A., and Illnerova, H., Hypothalamic melatonin receptor sites revealed by autoradiography. Brain Res.435 (1987) 359–363.
    Article CAS PubMed Google Scholar
  68. Watts, A. G., Swanson, L. W., Sanches-Watts, G., Efferent projections of the suprachiasmatic nucleus: 1. Studies using the anterograde transport of_Phaseolus vulgaris_ leucoagglutinin in the rat. J. comp. Neurol.258 (1987) 204–229.
    Article CAS PubMed Google Scholar
  69. Watts, A. G., and Swanson, L. W., Efferent projections of the suprachiasmatic nucleus. II. Studies using retrograde transport of fluorescent dyes and simultaneous peptide immunocytochemistry in the rat. J. comp. Neurol.258 (1987) 230–252.
    Article CAS PubMed Google Scholar
  70. Watts, A. G., Sheward, W. G., Whale, D., and Fink, G., The effect of knife cuts in the sub-paraventricular zone of the female rat hypothalamus on the oestrogen induced diurnal surges of plasma prolactin and lutienizing hormone and circadian wheel running activity. J. Endocr. (1989) in press.
  71. Weaver, D. R., and Reppert, S. M., Maternal melatonin communicates daylength to the fetus in Djungarian hamsters. Endocrinology_119_ (1986) 2861–2863.
    Article CAS PubMed Google Scholar
  72. Weaver D. R., Keohma, J., and Reppert, S. M., Maternal fetal communication of circadian phase in a precocius rodent the spiny mouse. Am. J. Physiol.253 (1987) E401–404.
    CAS PubMed Google Scholar
  73. Weaver, D. R., Namboodiri, M. A. A., and Reppert, S. M., Iodinated melatonin mimics melatonin action and reveals discrete binding sites in fetal brain. FEBS Lett.228 (1988) 123–127.
    Article CAS PubMed Google Scholar
  74. Weaver, D. R., Rivkees, S. A., and Reppert, S. M., Autoradiographic localization of iodomelatonin binding sites in the hypothalamus of three rodent species. Endocr. Soc. Abst.177 (1988) 265.
    Google Scholar
  75. Weichmann, A. F., Melatonin: Parallels in pineal gland and retina. Exp. Eye Res.42 (1986) 507–527.
    Article Google Scholar
  76. Weichmann, A. F., Bok, D., and Horwitz, J., Melatonin-binding in the frog retina. Autoradiographic and biochemical analysis. Invest. Ophthalmol. vis. Sci.27 (1986) 153–163.
    Google Scholar
  77. Williams, L. M., Melatonin binding sites in the rat brain and pituitary mapped by in vitro autoradiography. J. molec. Endocr.3 (1989) 71–75.
    Article CAS Google Scholar
  78. Williams, L. M., Hastings, M. H., and Morgan, P. J., Localization of melatonin binding sites by in vitro autoradiography in the brain of the Syrian hamster and the effect of neurone specific lesions. J. Endocr.119 (1988) Abst. 79.
  79. Williams, L. M., and Morgan, P. J., Demonstration of melatonin-binding sites of the pars tuberalis of the rat. J. Endocr.119 (1988) R1-R3.
    Article CAS PubMed Google Scholar
  80. Williams, L. M., Morgan, P. J., Hastings, M. H., Lawson, W., Davidson, G., and Howell, H. E., Melatonin receptor sites in the Syrian hamster brain and pituitary. Localization and characterization using [125I] iodomelatonin. J. Neuroendocr.1 (1989) 1–4.
    Article Google Scholar
  81. Wittkowski, W., Bergmann, M., Hoffman, K., and Pera, F., Photoperiod-dependent changes in TSH-like immunoreactivity of cells in the hypophysial pars tuberalis of the Djungarian hamster_Phodopus sungorus_. Cell Tissue Res.251 (1988) 183–187.
    Article CAS PubMed Google Scholar
  82. Wittkowski, W., Hewing, M., Hoffman, K., Bergmann, M., and Fechner, J., Influence of photoperiod on the ultrastructure of the hypophysical pars tuberalis of the Djungarian hamster_Phodopus sungorus_. Cell Tissue Res.238 (1984) 213–216.
    Article CAS PubMed Google Scholar
  83. Yellon, S. M., Bittman, E. L., Lehman, M. N., Olster, D. H., Robinson, J. E., and Karsch, F. J., Importance of duration of nocturnal melatonin secretion in determining the reproductive response to inductive photoperiod in the ewe. Biol. Reprod.32 (1985) 523–529.
    Article CAS PubMed Google Scholar
  84. Yellon, S. M., and Longo, L. D., Melatonin rhythms in fetal and maternal circulation during pregnancy in sheep. Am. J. Physiol.252 (1987) E799–802.
    CAS PubMed Google Scholar
  85. Zemdegs, I. Z., McMillen, I. C., Walker, D. W., Thorburn, G. D., and Novak, R., Diurnal rhythms in plasma melatonin concentrations in the fetal sheep and pregnant ewe during late gestation. Endocrinology_234_ (1988) 284–289.
    Article Google Scholar
  86. Zisapel, N., Melatonin receptors revisited. J. neural Transm.73 (1988) 1–5.
    Article CAS PubMed Google Scholar
  87. Zisapel, N., and Laudon, M., A novel melatonin antagonist affects melatonin-mediated processes in vitro and in vivo. Eur. J. Pharmac.136 (1987) 259–260.
    Article CAS Google Scholar
  88. Zisapel, N., Egozi, V., and Laudon, M., Circadian variations in the inhibition of dopamine release from adult and newborn rat hypothalamus by melatonin. Neuroendocrinology_40_ (1985) 102–108.
    Article CAS PubMed Google Scholar
  89. Zisapel, N., Shaharabani, M., and Laudon, M., Regulation of melatonin's activity in the female rat brain by estradiol: effects of neurotransmitter release and on iodomelatonin binding sites. Neuroendocrinology_46_ (1987) 207–216.
    Article CAS PubMed Google Scholar
  90. Zisapel, N., and Anis, Y., Impact of circulating testosterone on iodomelatonin binding sites in the male rat brain. J. molec. cell. Endocr.60 (1989) 119–1267.
    Article Google Scholar
  91. Zisapel, N., Nir, J., and Laudon, M., Circadian variations in melatonin-binding sites in discrete areas of the male rat brain. FEBS Lett.232 (1988) 172–176.
    Article CAS PubMed Google Scholar
  92. Zisapel, N., Erratum, J. Endocr.118 (1988) 168.
    Google Scholar

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