Literature DB >> 20589910

Melatonin receptors in the brain of the European sea bass: An in situ hybridization and autoradiographic study.

Patricia Herrera-Pérez1, Maria Del Carmen Rendón, Laurence Besseau, Sandrine Sauzet, Jack Falcón, José A Muñoz-Cueto.   

Abstract

Melatonin is synthesized in the pineal organ and retina of vertebrates and exhibits a clear nocturnal rhythm of secretion. This hormone influences a number of important physiological processes acting through specific transmembrane G-protein-coupled receptors. Recently, we have cloned three different melatonin receptors in sea bass belonging to the MT1, MT2, and Mel1c subtypes. In this paper, we have analyzed the central expression of the MT1 gene by in situ hybridization and compared its distribution with the localization of 2-[(125)I]-iodomelatonin binding sites. In situ hybridization and autoradiographic studies provided consistent results. Melatonin receptors were mainly expressed in visually related areas of the sea bass brain, such as the pretectal area, glomerular complex, optic tectum, torus longitudinalis, and thalamus. A conspicuous expression was also detected in neuroendocrine regions including the ventral telencephalon, preoptic area, and hypothalamus. Furthermore, melatonin receptors were evident in the ganglionic cell layer of the cerebellum. The presence of iodomelatonin binding and/or MT1 mRNA-expressing cells was also observed in the hindbrain, in particular in the oculomotor and trigeminal nuclei and in the reticular formation. Our results suggest an important role of MT1 in the mediation of melatonin actions in visual/light integration, mechanoreception, somatosensation, eye-body motor coordination, and integrative and neuroendocrine functions. Remarkable differences in the number and distribution of brain nuclei expressing MT1 mRNAs in sea bass and trout, the only fish species analyzed to date, represent another piece of evidence for differences in the organization of the visual and circadian systems observed between salmoniform and perciform teleosts.

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Year:  2010        PMID: 20589910     DOI: 10.1002/cne.22408

Source DB:  PubMed          Journal:  J Comp Neurol        ISSN: 0021-9967            Impact factor:   3.215


  11 in total

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3.  Distinct expression profiles of three melatonin receptors during early development and metamorphosis in the flatfish Solea senegalensis.

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4.  Testicular Steroidogenesis and Locomotor Activity Are Regulated by Gonadotropin-Inhibitory Hormone in Male European Sea Bass.

Authors:  José A Paullada-Salmerón; Mairi Cowan; María Aliaga-Guerrero; José F López-Olmeda; Evaristo L Mañanós; Silvia Zanuy; José A Muñoz-Cueto
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5.  Moonlight controls lunar-phase-dependency and regular oscillation of clock gene expressions in a lunar-synchronized spawner fish, Goldlined spinefoot.

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6.  Phylogenetic Reclassification of Vertebrate Melatonin Receptors To Include Mel1d.

Authors:  Elsa Denker; Lars O E Ebbesson; David G Hazlerigg; Daniel J Macqueen
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Review 7.  Effects of Melatonin on Anterior Pituitary Plasticity: A Comparison Between Mammals and Teleosts.

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8.  Melatonin inhibits GnRH-1, GnRH-3 and GnRH receptor expression in the brain of the European Sea Bass, Dicentrarchus labrax.

Authors:  Arianna Servili; Patricia Herrera-Pérez; María Del Carmen Rendón; José Antonio Muñoz-Cueto
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Review 9.  The Role of Melatonin as a Hormone and an Antioxidant in the Control of Fish Reproduction.

Authors:  Saumen Kumar Maitra; Kazi Nurul Hasan
Journal:  Front Endocrinol (Lausanne)       Date:  2016-05-04       Impact factor: 5.555

Review 10.  A Journey through the Gonadotropin-Inhibitory Hormone System of Fish.

Authors:  José A Muñoz-Cueto; José A Paullada-Salmerón; María Aliaga-Guerrero; Mairi E Cowan; Ishwar S Parhar; Takayoshi Ubuka
Journal:  Front Endocrinol (Lausanne)       Date:  2017-10-30       Impact factor: 5.555

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